Absorption Chiller Heat Pump

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1 For Future Energy & Environment - KTL KITECH World Energy bsorption Chiller Heat Pump CONTENT Features / Control Sytstem / bsorption Cycle 2 1 Double Effect Exhaust Gas Driven bsorption Machine 12 2 Single Effect Double Lift Driven bsorption Machine 18 3 Waste Heat Recovery bsorption Machine 26 4 Single Effect Hot Driven bsorption Machine 28 5 Double Effect Direct Fired bsorption Chiller & Heater 42 6 Double Effect Steam Fired bsorption Chiller 46 7 Single Effect Steam Fired bsorption Chiller 5 8 bsorption Heat Pump 52 9 Installation Records 54

2 Waste heat ->> Recycle energy Steam Exhaust gas Welcome to World Energy, Ltd. was founded for the purpose of developing and providing various types of wasteheat recovered and energy saving bsorption Machines such as Single Effect Double Lift Hot Driven bsorption Chiller, Single-Effect Hot Driven bsorption Machine, Double- Effect Exhaust Gas Driven bsorption Machine and bsorption Heat Pump. Thanks to an accumulated and international grade technologies of R&D and manufacturing, a highly-qualified engineers and also a cooperation with well-known world-class partners, the company is introducing high efficient chillers to the world market., Ltd. makes every effort to satisfy worldwide customers with high performing, reliable and international standard products., Ltd. will continue to improve customers business interests by offering energysaving products in the age of high energy cost, and furthermore, to contribute to environmental protection. Thank you., Ltd. is playing a key role in Korean District Cooling and Heating industry. In cooperation with KDHC(Korea District Heating Corporation) and KRSE(Korean ssociation of ir Conditioning, Refrigerating and Sanitary Engineers), the company introduced a new technology in bsorption Chiller and developed Certification Program for bsorption Chiller. ㆍ Quality Management System Certificate ㆍ Environmental Management System Certificate ㆍ Declaration of Conformity ㆍ R&D Center Certificate ㆍ Underwriters Laboratories

3 World Energy Milese Cooperate company starts st coercial operation of Single Effect 2-Lift Hot Driven bsorption Chiller (3RT, KDHC office, Korea) st Shipment to US market (13RT, US market) Complete Development of 1 st Generation Single Effect 2-Lift Hot Driven bsorption Chiller (75~1RT) st Development of Exhaust Gas Driven Simultaneous bsorption Chiller/Heater (UTC Power, US) UL Listed Ethylene Glycol Chemical Plant application chillers delivered (HWR-L 1RT*3Units S Model*5 Units) Development of Heating Cycle with 2-Lift bsorption Chiller Shipment of Exhaust Heat of Methylene- Chloride Driven bsorption Chiller to Chemical Plant (Korea) Shipment of Large capacity (478) Hot Driven Chiller to Chemical Plant(Korea) st Shipment to EU market (Italy, 2Units/Hot Chiller) st Shipment of 2-Lift Hot Chiller to EU market (Germany) st Shipment of Waste Heat Recovery bsorption Chiller (224, ZINC Factory, Korea) Complete Development of 2 nd Generation Single Effect 2-Lift Hot Driven bsorption Chiller (75~13RT) st Shipment of Single Effect 2 Lift Hot Chiller to Taiwan (2B825, Nanya Plastic)) st Shipment of Exhaust Gas Driven Chiller to EU market (IBM R&D Center, Germany) Shipment of 3,883 MVR(Evaporating for Mechanical Vapor Compression System) to Chemical Plant (Korea) Shipment of Heat Exchanger for Fuel Cell to UTC Power, US Shipment of the largest capacity(rt) Hot Driven Chillers to Coercial/ Residential complex district cooling application (Korea) 1

4 For Future Energy & Environment bsorption Machines Provide the best solution for CHP and CCHP application by utilizing waste heat more efficiently through various bsorption Machine technology. No CFC's and Environmentally safe Cost-Effective Direct Cooling & Heating Low Noise & Low Vibration operation Precise & Optimized Control by Microprocessor-based Controller Saving of Initial Investment High Reliability Exhaust-Energy Recovery Exhaust Gas Driven bsorption Machine produces both of cooling & heating directly from exhaust gas from reciprocating engine or gas turbine without additional heat recovery systems. nd Driven type Machine produces cooling from engine jacket water or the other hot water. Specially, in Double-lift type Machine, hot water energy can be utilized by 55 C. Excellent Part Load Performance Microprocessor-based control system allows stable, part load operation at cooling water temperatures as low as 18 [64 ] without a cooling water bypass. For maximum efficiency, a variable frequency drive pump automatically maintains optimum solution flow to Low-Temp. and also High-Temp during whole operation. Low Noise and Low Vibration The overall sound level of The Worldenergy machine is typically 65db. This allows the machines to be installed near occupies spaces or in area with strict sound requirements. Low vibration levels also make it possible to install the chiller on upper floors without special consideration for vibration dampening systems. Easy Reliability & Easy Maintenance Hermetically-designed refrigerant and solution pumps which are only moving parts provide reliability and they are field serviceable through pump isolation valves. lso marine-type water box cover on both of the absorber and condenser allows easy tube-cleaning and water-box inspection. nd factory performance test, which is provided as an optional basis, ensure the performance and function of chiller before shipment. Precise & Optimized Operation Factory mounted, wired and tested microprocessorbased controller monitor s and controls the machine operation continuously and automatically. touch screen display identifies operational status and fault indication. ll components meet internally acceptable codes like UL or CE or KS or equivalents. During the start-up sequence, the controller initiates a self-diagnostic system check to verify that all sensors are in range. Remote start/stop switch and a key-locked control panel door protect against unauthorized access. Reliable Purge System season Non-condensable gases are periodically exhausted ONE from the storage tank by a simple procedure performed while the machine is running. Evacuation is performed by a unit mounted vacuum pump that is connected to the purge evacuation valve. 2

5 WORLD ENERGY Control System Microprocessor-based Unit Controller is factory mounted, wired and tested to ensure a protection of the Machine and efficient capacity control. The program logic provides proper Start/Stop of the Machine and also enables a counication interface with others. Component Test and Diagnostic Check Touch Screen Interface for Status Display, Set-point Control, and System Configuration Primary and Secondary Status Messages Individual Start/Stop Schedules for Local Mode Recall of Up to 999 larm and lert Messages with Diagnostic Help Extensive Diagnostic and Service Capabilities dvanced Crystallization Protection Low Chilled Temperature larm Low Cooling Temperature larm Low Chilled Flow larm Overrides Hot High Temperature (Low Temp. Hot Driven type only) Solution High Temperature High Concentration Safety Cutouts Solution Pump Motor Overload/High Temperature Refrigerant Pump Motor Overload/High Temperature Low Chilled Temperature Cutout Low Refrigerant Temperature Cutout Low Cooling Temperature Cutout Low Chilled Flow Cutout Low Cooling Flow Cutout (Option) High Temperature Cutout Hot High Temperature Cutout (Low Temp. Hot Driven type only) High Temperature High Pressure Cutout (Exhaust Gas Driven type only) High Temperature Low Level Cutout (Exhaust Gas Driven type only) Protective Limits Strong Solution Leaving High Temperature larm Hot High Temperature larm (Low Temp. Hot Driven type only) Refrigerant Pump Overload/High Temperature larm Solution Pump Motor Overload/High Temperature larm Low Refrigerant Temperature larm Temperature Sensor Faults Leaving Chilled Temperature Cooling Temperature Entering Refrigerant Condensate Temperature from Refrigerant Evaporating Temperature Strong Solution Temperature Leaving Entering Hot Temperature (Low Temp. Hot Driven type only) Exhaust Gas Temperature Cutout (Exhaust Gas Driven type only) Capacity Control Leaving Chilled Control Running Travel Limit (Control Valve Opening Limit) Indications Chiller Operating Status Message bsorption Cycle State Points Dilution Cycle Power-On larm Safety Shutdown Message Run Hours Control Valve Position World Energy bsorption Machines / Control System Microprocessor Touch Screen 3

6 For Future Energy & Environment bsorption Cycle 1 Double Effect Exhaust Gas Driven bsorption Machine _ CHP series Cooling Cycle [Cooling Mode] 37 Low Temp. Cooling Exhaust Gas Chilled Chilled Inlet Change Valve (close) Change Valve (close) Bypass Exhaust Gas Inlet 32 Cooling Inlet High Temp. M Diverter Valve 45 Refrigerant Pump Solution Pump Low Temp. Heat Exchanger High Temp. Heat Exchanger The double-effect, exhaust-gas driven absorption machine consists of an evaporator, absorber, condenser, high-temperature and lowtemperature generators, solution heat exchangers, refrigerant and solution pumps, purge system, controls and accessories. During the cooling mode, the machine operates at the condition that under vacuum, water boils at a low temperature. Under typical operating conditions, this occurs at approximately 4.4 o C (4 o F), thereby cooling the chilled water that circulates through the evaporator tubes. refrigerant pump is used to spray the refrigerant(water) over the evaporator tubes to improve heat transfer. To make the cooling process continuous, the refrigerant (water) vapor must be removed as it is produced. To accomplish this, a lithium bromide solution (which has a high affinity for water) is used to absorb the water vapor. s this process continues, the lithium bromide becomes diluted, reducing its absorption capacity. solution pump then transfers this diluted solution to the generators where it is re-concentrated in two stages (double-effect) to boil off the previously absorbed water. variable frequency drive on the solution pump automatically maintains optimum solution flow to the generators at all operating conditions for maximum efficiency. The diluted solution is pumped to the high-temperature generator where it is heated and re-concentrated to a medium concentration solution by the exhaust heat from the gas turbine or reciprocating engine exhaust gas. The medium concentration solution from the high-temperature generator flows to the low-temperature generator where it is heated and re-concentrated to a strong solution by the high temperature water vapor released from the solution in the hightemperature generator. Since the low-stage generator acts as the condenser for the high-stage generator, the heat energy first applied in the high-stage generator is used again in the low-stage generator, thus reducing the heat input by approximately 45% as compared to an absorption chiller with a single-stage of re-concentration. The water vapor released in the shell side of the low-stage generator, in addition to the now condensed water vapor from the tube side of the low-stage generator, enters the condenser to be cooled and returned to a liquid state. The refrigerant water then returns to the evaporator to begin a new cycle. To remove heat from the machine, cooling water from a cooling tower is first circulated through the tubes of the absorber to remove the heat of vaporization. The water is then circulated through the tubes of the condenser. The re-concentrated (strong) solution from the low-stage generator flows back to the absorber to begin a new cycle. For efficiency purposes, the medium concentration solution from the high-stage generator is passed through the high-temperature solution heat exchanger to pre-heat the diluted (weak) solution, while pre-cooling the medium concentration solution. The re-concentrated (strong) solution from the low-stage generator is passed through the lowtemperature solution heat exchanger to pre-heat/pre-cool the solution before being returned to the absorber. 4

7 WORLD ENERGY bsorption Cycle Heating Cycle [Heating Mode] temperature at 6 o C (14 o F) Cooling Low Temp. Exhaust Gas Chilled Change Valve (open) Bypass Chilled Inlet Refrigerant Pump Solution Pump temperature at 79 o C (175 o F) Cooling Cooling Inlet Low Temp. Low Temp. Heat Exchanger Change Valve (open) High Temp. Heat Exchanger Change Valve (close) High Temp. Change Valve (close) M Diverter Valve Inlet Exhaust Gas Inlet bsorption Cycle - CHP Cooling & Heating Mode Exhaust Gas Chilled Bypass Chilled Inlet Exhaust Gas Inlet Cooling Inlet Change Valve (close) High Temp. M Diverter Valve Refrigerant Pump Solution Pump Low Temp. Heat Exchanger HighTemp. Heat Exchanger During the heating mode, the cycle follows a different vapor flow path than that undertaken for cooling and does not use the typical absorption process. In addition, the absorber-condenser cooling water circuit is drained and thus not operated, since all heat rejection from the machine is designed to take place through the evaporator (now the heating bundle) in a classic two-pipe system that utilizes only the evaporator nozzles. High temperature water vapor produced in the high-temperature generator section is passed directly to the evaporator via the absorber where it condenses and transfers its heat to the water circulating through the evaporator tubes. This condensed water then flows to the absorber section where it mixes with the concentrated solution returning from the high-temperature generator. The diluted solution is then pumped back to the hightemperature generator to repeat the vapor generation phase for the heating function. Quick changeover from cooling to heating is accomplished by switching the positions of two hand valves, draining the absorber-condenser water circuit and putting the machine into heating mode by changing the position of a switch in the control panel. The hot water temperatures is 6oC (14oF) as a standard without additional components and 79oC (175oF) as an option with the additional heat exchanger. 5

8 For Future Energy & Environment Double Effect Exhaust Gas bsorption Driven bsorption Cycle Chiller and Heater 2 Single Effect Double Lift Hot Driven bsorption Machine _ 2B series Hot ux Hg Cooling % Hot Inlet 95 Intermediate Solution Pump 58.3% 8. ux. Heat Exchanger 63.5 Chilled 6.8 Hg C 21.2 Hg 8 13 Chilled Inlet ux % % 36.5 Refrigerant Pump Solution Pump Low Temp. Heat Exchanger 31 Cooling Inlet High Temp. Heat Exchanger ux. Solution Pump 59.9% 65.2 Concentrated Solution Pump Refrigerant Intermidiate Soution ux. Intermidiate Soution Chilled Hot Diluted Solution Concentrated Solution ux. Concentrated Solution Cooling Double Lift driven absorption chiller has main cycle and aux. cycle The chilled water is cooled down in evaporator and the vaporized refrigerant is absorbed into concentrated solution which is coming from 2nd generator. The concentrated solution becomes diluted solution and the heat is absorbed into cooling water. The diluted solution in absorber flows to 1st generator through low temp. heat exchanger and high temp. heat exchanger, and 95 o C of driving hot water heats up the diluted solution and refrigerant vapor is generated. The absorbent solution in 1st generator becomes intermediate solution and it flows to 2nd generator through high temp. heat exchanger. The intermediated solution in 2nd generator is heated up by driving hot water and the refrigerant vapor is generated. The vaporized refrigerant from 2nd generator is absorbed into absorbent solution in aux. absorber and it becomes aux. diluted solution. The aux. diluted solution is delivered to aux. generator through aux. heat exchanger, and the solution is heated up by driving hot water return from 2nd generator and becomes aux. concentrated solution. The aux. concentrated solution is delivered to aux. absorber through aux. heat exchanger. The refrigerant vapors which are generated 1st generator and aux. generator are condensed in condenser and then flow into evaporator, and the heat in condenser is absorbed by cooling water. 6

9 WORLD ENERGY bsorption Cycle 3 Waste Heat Recovery bsorption Machine _ 2 series Cooling Refrigerant Diluted Solution Chilled Cooling 36 Concentrated Solution ux. Intermediate Solution ux. Concentrated Solution Hot ux. 6 ux. Concentrated Solution Pump Chilled 8 Hot Inlet 13 7 Chilled Inlet 4 Refrigerant Pump Solution Pump 31 Cooling Inlet Solution Heat Exchanger ux.solution Heat Exchanger ux. ux. Solution Pump Single Effect Hot Driven bsorption Machine _ HWR - L series Concentrated Solution Pump bsorption Cycle - 2B / 2 / HWR-L 36.5 Cooling Condedenser 8 95 Hot Hot 8 Chilled 13 Chilled Inlet Refrigerant Diluted Solution 31 Cooling Inlet Concentrated Solution Chilled Cooling Hot Refrigerant Pump Solution Pump Exchanger 7

10 For Future Energy & Environment Double Effect Exhaust Gas bsorption Driven bsorption Cycle Chiller and Heater 5 Double Effect Direct Fired bsorption Chiller & Heater _ DW series Cooling Cycle [Cooling Mode] Cooling 37.5 Low Temp. High Temp. Exhaust Gas Chilled 7 Change Valve (Close) 12 Chilled Inlet Change Valve (Close) Refrigerant Gas Inlet Refrigerant Vator Diluted Solution Intermediate Solution Concentrated Solution Refrigerant Pump Solution Pump Low Temp. High Temp. Heat Exchanger Heat Exchanger Chilled Cooling Cooling Inlet 32 Heating Cycle [Heating Mode] Cooling Low Temp. High Temp. Exhaust Gas Hot 6 Change Valve (Open) 55 Hot Inlet Change Valve (Open) Refrigerant Refrigerant Vator Gas Inlet Diluted Solution Intermediate Solution Concentrated Solution Hot Refrigerant Pump Solution Pump Low Temp. Heat Exchanger High Temp. Heat Exchanger Cooling Inlet 8

11 WORLD ENERGY bsorption Cycle 6 Double Effect Steam Fired bsorption Chiller _ SW Series Cooling Low Temp. High Temp. Steam Inlet Chilled Chilled Inlet 7 Refrigerant Refrigerant Vator Diluted Solution Intermediate Solution Concentrated Solution Chilled Cooling Steam Refrigerant Pump Solution Pump Cooling Inlet Low Temp. Heat Exchanger Steam Trap Drain Single Effect Steam Fired bsorption Chiller _ S Series Cooling Steam Inlet Steam Drain Reclaimer High Temp. Heat Exchanger bsorption Cycle - DW Cooling & Heating Mode / SW / S Chilled Steam Drain Reclaimer Drain Chilled Inlet Refrgerant Refrgerant Vator Diluted Solution Concentrated Solution Chilled Cooling Inlet Cooling Steam Refrigerant Pump Solution Pump Heat Exchanger 9

12 For Future Energy & Environment Double Effect Exhaust Gas bsorption Driven bsorption Cycle Chiller and Heater 8 bsorption Heat Pump Cycle Steam Fired Type _ HPS series Hot Steam Inlet Drain Waste Waste Inlet Refrigerant Refrigerant Vator Diluted Solution Concentrated Solution Hot Waste Steam Refrigerant Pump Solution Pump Hot Inlet Solution Heat Exchanger Direct Fired Type _ HPD series Hot Exhaust Gas Waste Waste Inlet Refrigerant Refrigerant Vator Diluted Solution Concentrated Solution Gas Inlet Hot Waste Refrigerant Pump Hot Pump Hot Inlet Solution Heat Exchanger 1

13 WORLD ENERGY bsorption Cycle Steam Generation Type _ HT series Waste Heat Inlet Hot (Heat source : Hot or Drain) Hot Inlet Refrigrant Cirlculration Pump Cooling Waste Heat (Heat source : Hot or Drain) Refrigerant Refrigerant Vator Diluted Slution Concentrated Solution Hot Cooling Waste Heat Duhring Diagram _ 2B Series 1 Solution Pump Refrigerant Pump Solution Heat Exchanger Cooling Inlet % 4% 5% 6% bsorption Cycle - HPS / HPD / HT Heat Pump PRESSURE [Hg] C 13 C CHILLED WTER COOLING WTER OUTLET 36.5 C 34.3 C 33.3 C COOLING WTER INLET 31 C HOT WTER OUTLET 55 C 14.3% 44.9% 69.7 C 56.2% 61.5% 58.9% 81.6 C HOT WTER INLET 95 C 7% SOLUTION TEMPERTURE [ C]

14 For Future Energy & Environment Performance Data Double Effect Exhaust Gas Driven bsorption Machine Double Effect Exhaust Gas Driven Type (5~4RT) Model Unit CHP5 CHP6 CHP7 CHP8 CHP1 CHP12 CHP15 CHP18 CHP21 CHP24 CHP28 CHP32 CHP36 CHP4 Cooling Capacity usrt / 7 Chilled P. Drop mq / 37.5 Cooling P. Drop mq Heating Capacity Mcal/h / 6 Hot P. Drop /h mq kg/sec Cooling 45 / 165 Temp. Heating 45 / Exhaust Gas Pressure Drop q Inlet Conn. * 782 * * * * * * * * * * * * * *759 Conn Diverter Valve Power source bs. Pump [] 1.5 (5.5) 3ø, 4V, 5Hz 2. (6.4) 2.4 (6.9) 3.2 (9.) Ref. Pump [].2 (1.).3 (1.2).4 (1.4) Electric Purge Pump Sealing Blower [] [] [].4 (1.4).4 (2.5).2 (.5) mp.(4vac) Lenght (L) ,638 3,68 3,717 4,742 4,872 Size Width (W) 1,683 1,722 1,761 1,8 1,857 1,935 2,52 2,91 2,194 2,194 2,31 2,349 2,349 2,349 Height (H) 18 2,9 2,147 2,399 Weight Rigging Operation Note 1. Working pressure of each water side is based on 1.MPa (15psig). 2. Lowest outlet temperature of chilled water is 5 o C and 18 o C for cooling water. 3. Controllable cooling capacity range shall be 25~1% as a standard condition and ~1% as an option. 4. Each water flow can be adjusted within 5~12%. 5. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for and o C of hot-water temperature is possible as an option. 12

15 CHP Series WORLD ENERGY Double Effect Exhaust Gas Driven bsorption Machine Performance Data Double Effect Exhaust Gas Driven Type (45~15RT) Model Unit CHP45 CHP5 CHP56 CHP63 CHP7 CHP8 CHP9 CHP1 CHP11 CHP12 CHP13 CHP14 CHP15 Chilled Cooling Capacity usrt / P. Drop mq / 37.5 Cooling P. Drop mq Hot Heating Capacity P. Drop Mcal/h /h mq / Cooling kg/sec / Temp. Heating 45 / Exhaust Gas Pressure Drop q Inlet Conn. * 1376 * * * * * * * * * * * * *268 Conn Diverter Valve Power source 3ø, 4V, 5Hz bs. Pump [] 3.2 (9.) 5.5 (15.) 7.5 (24.) Ref. Pump [].3 (1.2) 1.5 (4.) Electric Purge Pump [].4 (1.4).75 (2.2) Sealing Blower mp.(4vac) Lenght (L) [] [] ,954 4, ,54 6,38 5,644.4 (2.5).2 (.5) ,142 6,667 6,293 6, ,318 6,974 7,475 Size Width (W) 2,491 2,569 2,934 3,69 3,159 3,33 3,48 3,53 4,348 4,448 4,598 4,932 5,182 Height (H) 2,633 2,962 3,38 3,5 3,7 Weight Rigging Operation CHP Performance Data Note 1. Working pressure of each water side is based on 1.MPa (15psig). 2. Lowest outlet temperature of chilled water is 5 o C and 18 o C for cooling water. 3. Controllable cooling capacity range shall be 25~1% as a standard condition and ~1% as an option. 4. Each water flow can be adjusted within 5~12%. 5. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for and o C of hot-water temperature is possible as an option. 13

16 I For Future Energy & Environment Double Double Effect Effect Exhaust Exhaust Gas Driven Gas Driven bsorption bsorption Chiller Machine and Heater Foundation K/2 H Nut nchor Bolt Steel Plate F,, & Low Temperature Shell ssembly F B Welding Machine Feet J/2 J E Example of nchoring K Note 1. Drain ditch should be prepared around foundation. 2. Horizontal level of founda surface should be maintained less than 1 per 1m. 3. indicates the location of anchor bolts. (nchor bolt, nut and steel plates are not supplied) G High Temperature ssemply G D Drain Ditch Foundation 5 C Model CHP5 CHP6 CHP7 CHP8 CHP1 CHP12 CHP15 CHP18 CHP21 CHP24 CHP28 CHP32 CHP36 CHP4 CHP45 CHP5 CHP56 CHP63 CHP7 CHP8 CHP9 CHP1 CHP11 CHP12 CHP13 CHP14 CHP15 () 1,421 1,921 1,941 2,961 2,936 3,956 3,96 3,856 4,398 4,896 4,348 4,846 5,371 4,896 5,421 5,921 5,371 5,871 B () 8 7 1, ,15 1,21 1,29 1,5 C () 973 1,33 1,194 1,37 1,453 1,386 1,44 1,567 1,37 1,6 2,4 2,5 D () , 1,1 1,2 1,2 1,4 1,4 1,4 1,5 1,7 1,8 2,1 E () ,171 1,171 1,146 1,131 1,16 H () I () J () K () F () G ()

17 CHP Series WORLD ENERGY Double Effect Exhaust Gas Driven bsorption Machine System Pipings 1 ir Handling Unit Expansion Tank Exhaust gas Inlet Exhaust Gas Bypass Diverter Valve Exhaust gas ir Engine Fuel P T Supply water ir vent V Bleed off Cooling Tower Drain line CHP Foundation / System Pipings Chilled / Hot water Pump (2nd) Chilled / Hot Flow meter water Pump (1st) F P T Bypass valve D P T Inlet Inlet P T Thermostat Pressure gauge Temperature Gauge Damper valve Bypass valve Strainer Valve BSORPTION CHILLER P T Cooling water Pump Supply Header Return Header 1) ll external equipment out of dotted line is scope of customer's. 2) Refer to outline drawing and specification data sheet for the external dimensions of the machine, the location & the diameter of water pipe connection and the dimensions & the size of Exhaust gas line connections. 3) The locations of chilled water pumps, cooling water pumps and expansion tanks shall be determined in consideration of the hydrostatic head of pumps and the height of building. nd the Machine shall not be subject to a pressure higher than the designed pressure at any water header. 4) For cooling water quality control, it is recoended to install cooling water bleed-off device on the inlet pipe line of cooling towers. 5) round 1 meshes of strainers are recoended to be installed in the cooling water line. 6) For the maintenance and the inspection of the Machine, the following equipment shall be installed on each chilled water and cooling water inlet/outlet lines as well as stop valve. Thermometers and pressure gauges shall be installed at chilled and cooling water inlet/outlet. ir relief valves shall be installed on each chilled and cooling water lines at higher points than each water headers. Drain valves shall be installed at the lowest position between the stop valves of chilled and cooling water and the Machine and the drain valve shall be piped to the drain ditch. 7) There shall be a sufficient clearance for access to the absorber, evaporator, condenser, and generator to facilitate inspection and cleaning work. Diverter Valve & Exhaust Gas Duct For Diverter Valve; 1) Install the diverter valve at the exhaust gas duct end of gas turbine or reciprocating engine and level the diverter valve horizontally by using the level gauge. 2) Install the transient duct between high-stage generator and diverter valve. 3) Connect the wiring in accordance with wiring diagram of the manufacturer. Exhaust Duct High Stage Vertical Duct Bypass Exhaust Diverter Valve Exhaust Gas For Exhaust Gas Duct; 1) Sharp bend and restrictions should be avoided to allow smooth gas flow. 2) The exhaust gas duct outlet should be arranged to prevent the rain water from entering into the machine and the drain connection should be provided to remove the condensate from the exhaust gas outlet side. 15

18 For Future Energy & Environment Double Effect Exhaust Gas Driven bsorption Machine Thermal Insulation Hot Surface 75 : High Temp. 5 : High Heat Exchanger Box with High Temperature Piping, Steam box 19 : Heat Exchanger Body with Low Temperature Box, Low temperature Body with Box 1 : Low temperature Piping Cold Surface 19 : Body with Box 1 : Inlet and Piping of Refrigerant Pump Note 1. Use only Non-inflaable or Incombustible insulation materials. 2. Do not insulate motor of refrigerant pump. 3. Total insulation area includes piping. 4. Do not cover components such as service valves, dampers, diaphragm valves, sight glass, control valves or thermometers or sensor wells. 5. The standard Material and Thickness as the recoendation : HOT Surface insulation Material of insulation : Glass wool, Thermal Conductivity.4kcal/m h Thickness of insulation : 5 (2 inch), 75 (3 inch) Material of insulation : Closed cell type Non-inflaable polymer sponge Thickness of insulation : 1 (3/8inch), 19 (3/4inch) COLD Surface insulation Material of insulation : Closed cell type Non-inflaable polymer sponge Thickness of insulation : 1 (3/8 inch), 19 (3/4 inch) Model () CHP5 CHP6 CHP7 CHP8 CHP1 CHP12 CHP15 CHP18 CHP21 CHP24 CHP28 CHP32 CHP36 CHP Hot Surface (m 2 ) Wrapping Material when Glass wool is used. Insulated parts on body : Colored galvanized steel with.45 thickness or over Insulated parts on pipes : Colored galvanized steel with.3 thickness or over 6. For insulation area for each model, please refer to the picture below. 7. The water box sections should be worked to be disassembled for the repair. 8. If necessary, please perform the finish painting in the field after completing World the insulation Energy work. Co.,LTD. Cold Surface (m 2 ) Model Hot Surface (m 2 ) () CHP CHP CHP56 CHP63 CHP7 CHP8 CHP9 CHP1 CHP11 CHP12 CHP13 CHP14 CHP Cold Surface (m 2 )

19 CHP Series WORLD ENERGY Double Effect Exhaust Gas Driven bsorption Machine Start-up Sequence Start Chilled Pump Cooling Start Request Verify ll sensors in range In Prestart safties Yes Mode 6 deg C Heating No No Sensor Fault / Prestart lerts 79 deg C Heating 1 CHP Thermal Insulation / Start-up Sequence Start Verify Timer No B Verify Chilled Flow No Verify timer elapsed Yes Chilled Fault Yes Start-Stop Condition Yes Monitor for Start-Stop Start 3 min Refrigerant Pump Delay Timer No No Start Cooling Pump Ref Pump Timer elapsed Start Verify Timer No Yes Verify Cooling Flow No timer Elapsed Yes Cooling Fault Start Refrigerant Pump Yes Start Tower Control Start Solution Pump Machine Running 17

20 For Future Energy & Environment Note Single Effect Double Lift Hot Driven bsorption Machine Performance Data Single Effect Double Lift Driven Type (75~375RT) Model Unit 2B75 2B9 2B11 2B135 2B155 2B18 2B21 2B24 2B27 2B3 2B34 2B375 Cooling Capacity ,55 1,196 1,319 usrt / 7 Chilled P. Drop mh / 36.5 Cooling P. Drop mh / 55 /h Hot Pressure Shell mh Drop Control Valve mh Control Valve Power source - 3ø, 4V, 5Hz bs. Pumps () 2.3 (8.8) 2.6 (9.8) 3.2 (1.8) Ref. Pump ().2 (1.1).3 (1.5).4 (1.5) Electric Purge Pump ().4 (1.5) ().2 (.5) Total Total mpere Lenght (L) 2,658 3,678 3,72 4,74 4,872 4,882 Size Width (W) 1,834 2,19 2,248 2,43 Height (H) 2,84 2,257 2,519 2,787 Weight Rigging Operation Space for Tube Replacement 2,4 3,4 4,5 Chilled Side Volume of Cooling Side ,8 1,353 1,46 1,729 1,827 Machine Hot Side Working pressure of chilled/cooling water circuits are based on 1.Mpa (15psig) and 1.6MPa (23psig) for driving hot water circuit. 2. Standard flow rate of chilled water per usrt is.648, 1.42 for cooling water and.1187/h for hot water. 3. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for and. ㆍ 2B18 (Korea) 18

21 2B Series WORLD ENERGY Single Effect Double Lift Hot Driven bsorption Machine Performance Data Chilled Cooling Hot Electric Size Weight Cooling Capacity P. Drop Pressure Drop P. Drop Control Valve Power source bs. Pumps Ref. Pump Purge Pump Total Lenght (L) Width (W) Height (H) Rigging Shell Control Valve Total mpere Operation Space for Tube Replacement Volume of Machine Model Chilled Side Cooling Side Hot Side Unit usrt mh 2 mh 2 /h mh 2 mh 2 - () () () () Single Effect Double Lift Driven Type (42~1,3RT) 2B42 2B47 2B525 2B6 2B675 2B75 2B825 2B9 2B975 2B15 2B1 2B13 1,477 1,653 1,846 2,11 2,373 2,637 2,91 3,165 3,428 3,692 3,956 4, ,5 1, 1,3 12 / / ,73 1,18 1,287 1,394 1,52 1,69 1, / ø, 4V, 5Hz 5.6 (18.6) 7.7 (25.) 9.4 (31.5) 12.7 (45.).4 (1.6) 1.5 (4.).4 (1.5).75 (2.3).2 (.5) ,998 5,54 6,38 5,654 6,152 6,677 6,258 6,783 7,283 7,1 7,51 8,51 2,788 3,14 3,531 4,43 3,36 3,471 3,837 4, ,5 5,2 5,7 5,2 5,7 6,2 5,7 6,2 6,7 7,2 7,7 8, ,37 1,16 1,373 1,459 1,541 1,97 2,83 2,39 2,448 2,625 2,788 3,567 3,776 3,996 4,938 5,26 5,461 7,867 8,193 8,844 1,5 1,153 1,247 1,561 1,684 1,813 2,4 2,21 2,354 2,81 2,994 3, B Performance Data Options 1. High Pressure water Boxes boxes rated for 25psig or 3psig working pressure shall be furnished when specified on the equipment specification data. 2. Special Tubes Tubes of non-standard materials and/or wall thickness shall be provided when specified on the equipment specification data. 3. Special operation temperature conditions Special operation temperature shall be provided when specified on the equipment specification data. 19

22 For Future Energy & Environment Single Effect Double Lift Hot Driven bsorption Machine Outline_Foudation 2B 75 / 9 1. Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m RER R (L) 1834(W) 1941 () 1928 ux (65) (H) 2'nd ux. 1'st 1452 Inlet(65) 123 (8) 882 Inlet(8) 653 Inlet() FRONT 1 Clearance for tube removal at either side 2B 11 / 135 RER Clearance for tube removal at either side R FRONT (L) 1834(W) (15) 1928 ux (65) (H) 2'nd ux. 1'st 1452 Inlet(65) 1217 (1) Inlet(1) Inlet(15)

23 2B Series WORLD ENERGY Single Effect Double Lift Hot Driven bsorption Machine Outline_Foudation 2B 155 / Clearance for tube removal at either side side R65 1. Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m RER FRONT B Outline_Foudation 372(L) 219(W) (15) 281 ux. 2 (8) (H) 2'nd ux. 1'st 162 Inlet(8) 137 () 118 Inlet() 75 Inlet(15) B 21 / RER FRONT Clearance for tube removal at either side R65 474(L) 219(W) (2) (H) 2'nd ux. 1'st ux. () 137 (8) 2 Inlet(8) 162 Inlet() Inlet(2)

24 For Future Energy & Environment Single Effect Double Lift Hot Driven bsorption Machine Outline_Foudation 2B 27 / 3 1. Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m RER R (W) (25) 2319 ux. (1) (H) 2'nd ux. 1'st (15) 1489 Inlet(1) 1773 Inlet(15) 152 Inlet(25) B 34 / RER FRONT Clearance for tube removal at either side 4872(L) Clearance for tube removal at either side R FRONT (25) (L) 243(W) ux. (1) (H) 2'nd ux. 1'st (2) 166 Inlet(1) 1971 Inlet(2) 1122 Inlet(25)

25 2B Series WORLD ENERGY Single Effect Double Lift Hot Driven bsorption Machine Outline_Foudation 2B 42 / 47 / 525 Clearance for tube removal at either side I R65 1. Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m 233 B C D E F G H I 2B B B RER FRONT B B Outline_Foudation (3) (H) 2788(W) ux. 1'st 2'nd ux. (1) 293 Inlet(1) 285 (2) 1769 Inlet(2) 1149 Inlet(3) 634 D C B E F HG D 2B 6 / 675 / 75 J Clearance for tube removal at either side R B C D E F G H I J 2B B B RER FRONT B (35) (W) ux. () (H) 2'nd ux. 1'st Inlet() 2356 (25) 1993 Inlet(25) 1299 Inlet(35) 657 E D CB F G I H 23

26 For Future Energy & Environment Single Effect Double Lift Hot Driven bsorption Machine Outline_Foudation 2B 825 / 9 / Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m J Clearance for tube removal at either side R B C D E F G H I J 2B B B RER FRONT 5 3 B (W) (4) 3541 ux. () 'st Inlet() (H) 2'nd ux. (3) 2199 Inlet(3) 1427 Inlet(4) 667 E D CB F G I H 2B 15 / 1 / 13 J 341 B C D E F G H I J 2B B1 2B RER FRONT 5 3 B Clearance for tube removal at either side R8 443(W) (5) 3631 ux. (15) 3834 Control Panel (35) 2154 Chilledwater Inlet(35) (H) 2'nd ux. 1'st Inlet(15) 2662 Inlet(5) 88 E D CB F G I H

27 2B Series WORLD ENERGY Single Effect Double Lift Hot Driven bsorption Machine Thermal Insulation Hot Surface 19 : 1st with water box, 2nd with water box, ux. with water box, Heat Exchanger body 1 : Pipes of High temperature s parts Cold Surface 19 : with water box 1 : Inlet and outlet pipes of refrigerant pump 2 Note 2'nd ux. 1. Use only Non-inflaable or Incombustible insulation materials. 2. Do not insulate motor of refrigerant pump. 3. Total insulation area includes piping. 4. Do not cover components such as service valves, dampers, diaphragm valves, sight glass, control valves or thermometers or sensor wells. 5. The standard Material and Thickness as the recoendation : HOT Surface insulation Material of insulation : Non-inflaable polymer sponge usable at 12 C Thickness of insulation : 19 (3/4 inch), 1 (3/8 inch) when polymer sponge is used 1'st ux. COLD Surface insulation Material of insulation : Closed cell type Non-inflaable polymer sponge Thickness of insulation : 1 (3/8 inch), 19 (3/4 inch) 6. For insulation area for each model, please refer to the table below. 7. The water box sections should be worked to be disassembled for the repair. 8. If necessary, please perform the finish painting in the field after completing the insulation work. 2B Outline_Foundation / Thermal Insulation Model Hot Surface(m 2 ) Cold Surface(m 2 ) () B B B B B B B B B B B34 2B Model Hot Surface(m 2 ) Cold Surface(m 2 ) () B B B B B B B B B B B1 2B

28 For Future Energy & Environment Waste Heat Recovery bsorption Machine Performance Data Waste Heat Recovery (Single Effect Hot ) Driven Type (75~375RT) Model Unit Cooling Capacity usrt ,55 3 1, , / 8 Chillrd Pressure Drop mh / 36 Cooling Pressure Drop mh /6 Hot Pressure Shell Drop Control Valve /h mh 2 mh Control Valve Power source - 3ø, 4V, 5Hz Ref. Pump () 3. (11.) 3.8 (12.6) 4.8 (15.2) bs. Pump ().2 (1.1).3 (1.5).4 (1.6) Electric Purge Pump ().4 (1.5) ().2 (.5) Total Total mpere Length (L) 2,658 3,678 3,72 4,74 4,776 4,88 Size Width (W) 2,281 2,623 2,795 3,22 Height (H) 2,84 2,257 2,54 2,838 Weight Rigging Operation Space for Tube Replacement 2,4 3,4 4,5 Note 1. Working pressure of chilled water/cooling water circuit are based on 1.Mpa [15psig]. 2. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for. 3. Standard power source is 3ph, 4V, 5Hz. vailable 22, 38, 44V and 46V Power source. 4. Catalogue specifications are subject to change without prior notice. ㆍ 224 (Zinc Factory, Korea) 26

29 2 Series WORLD ENERGY Waste Heat Recovery bsorption Machine Performance Data Waste Heat Recovery (Single Effect Hot ) Driven Type (42~13RT) Model Unit Cooling Capacity usrt 1, , , ,11 6 2, , , , , ,692 1,5 3,956 1, 4,571 1,3 13 / 8 Chillrd Pressure Drop mh Cooling Pressure Drop mh / ,94 1,25 1,47 1,563 1,719 1, ,32 2, , , Performance Data 7 / 6 /h Hot Pressure Shell Drop Control Valve mh 2 mh Control Valve Power source ø, 4V, 5Hz Ref. Pump () 9.2 (27.) 1.4 (35.) 18. (64.) bs. Pump ().4 (1.6) 1.5 (4.) Electric Purge Pump ().4 (1.5).75 (2.3) ().2 (.5) Total Total mpere Length (L) 4,998 5,54 6,38 5,654 6,158 6,683 6,293 6,818 7,318 7,8 7,58 8,475 Size Width (W) 3,467 3,95 4,477 5,22 Height (H) 3,222 3,6 3,85 4, Weight Rigging Operation Space for Tube Replacement 4,5 5,2 5,7 5,2 5,7 6,2 5,7 6,2 6,7 7,2 7,7 8,2 Note 1. Working pressure of chilled water/cooling water circuit are based on 1.Mpa [15psig]. 2. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for. 3. Standard power source is 3ph, 4V, 5Hz. vailable 22, 38, 44V and 46V Power source. 4. Catalogue specifications are subject to change without prior notice. 27

30 For Future Energy & Environment Note Single Effect Hot Driven bsorption Machine Single Effect Low Temperature Hot bsorption Chiller Performance Data Chilled Cooling Hot Electric Size Weight Model Cooling Capacity P. Drop Pressure Drop P. Drop Control Valve Power source bs. Pumps Ref. Pump Purge Pump Lenght (L) Width (W) Height (H) Rigging Operation Shell Control Valve Space for Tube Replacement Volume of Machine Total mpere Chilled Side Cooling Side Hot Side Unit usrt mh 2 mh 2 /h mh 2 mh 2 - () () () () 1. Working pressure of chilled/cooling water circuits are based on 1.MPa (15psig) and 1.6MPa (23psig) for driving hot water circuit. 2. Standard flow rate of chilled water per usrt is.648, for cooling water and.28/h for hot water. 3. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for and. 4. High temperature (1 ~ 15 degree C) Hot Driving type is available as additional model. Followings are the standard capacity range and the standard operational condition for the model selection; - Cooling capacity range as Standard model : 1 ~ 13RT - Inlet / temperature : 138 / 18 degree C - Inlet / temperature : 12 / 7 degree C - Inlet / temperature : 32 / 39 degree C Single Effect Hot Driven Type (3~3RT) L3 L4 L5 L6 L75 L9 L11 L135 L155 L18 L21 L24 L27 L , / / / ø, 38V, 5Hz 1.2 (4.) 1.5 (4.) 2. (6.) 2.4 (7.).2 (1.1).3 (1.5).4 (1.6).4 (1.5).2 (.5) ,95 2,598 2,597 3,68 3,78 4,734 4,776 1,77 1,95 1,244 1,472 1,495 1,88 2,255 2,257 2, ,9 2,4 2,4 3,4 4,

31 HWR - L Series WORLD ENERGY Single Effect Hot Driven bsorption Machine Performance Data Single Effect Hot Driven Type (34~13RT) Model Unit L34 L375 L42 L47 L525 L6 L675 L75 L825 L9 L975 L15 L1 L13 Cooling Capacity usrt 1, , , , , ,11 6 2,373 2, , , , ,692 1,5 3,956 4,571 1, 1,3 13 / 8 Chilled P. Drop mh / 36.5 Cooling P. Drop mh , , , , , , m Hot Pressure Drop Shell Control Valve /h mh 2 mh / L-Performance Data Control Valve Power source - 3ø, 38V, 5Hz bs. Pumps () 2.4 (7.) 3. (11.) 4.5 (16.) Electric Ref. Pump Purge Pump () ().4 (1.6) 1.5 (4.).4 (1.5).75 (2.3) ().2 (.5) Total mpere Lenght (L) 4,88 4,998 5,54 6,38 5,644 6,142 6,667 6,293 6,818 7,318 6,86 7,36 7,86 Size Width (W) 1,575 1,83 2,26 2,329 2,929 Height (H) 2,838 3,222 3,6 4, Weight Rigging Operation Space for Tube Replacement 4,5 5,2 5,7 5,2 5,7 6,2 5,7 6,2 6,7 6,2 6,7 7,2 Volume of Machine Chilled Side Cooling Side Hot Side 463 1, , , , , , ,45 3, ,11 3, ,439 4,1 95 1,525 4, ,67 4,435 1,45 1,688 5,426 1,146 1,783 5,675 1,217 1,98 6,172 1,36 Options 1. High Pressure water Boxes boxes rated for 25psig or 3psig working pressure shall be furnished when specified on the equipment specification data. 2. Special Tubes Tubes of non-standard materials and/or wall thickness shall be provided when specified on the equipment specification data. 3. Special operation temperature conditions Special operation temperature shall be provided when specified on the equipment specification data. 29

32 For Future Energy & Environment Single Effect Hot Driven bsorption Machine HWR-L3 / 4 R6 176(W) 295(L) Cooling (1) 176 Inlet (65) (65) (H) (65) Cooling Inlet (1) Inlet (65) R6 177(W) 26(L) Cooling (1) 1772 Cooling 188(H) Inlet (65) 1394 (65) 158 (65) 1169 Inlet (65) 762 Inlet (1) Outline_Foudation 1. Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m HWR-L5 / Clearance for tube removal at either side Clearance for tube removal at either side

33 HWR - L Series WORLD ENERGY Single Effect Hot Driven bsorption Machine Outline_Foudation HWR-L75 / 9 1. Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m (W) R6 2597(L) 163 Cooling () 2 Cooling Inlet () (H) Inlet (65) (65) 1825 (8) 141 Inlet (8) 95 L- Outline Foundation Clearance for tube removal at either side HWR-L11 / R (L) 1242(W) 219 Colling water (15) Inlet (8) (8) 142 (1) 2255(H) 958 Inlet (1) Inlet (15) 8 7 Clearance for tube removal at either side

34 For Future Energy & Environment Single Effect Hot Driven bsorption Machine Outline_Foudation HWR-L155 / Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m R (L) 1472(W) 2257(H) Inlet (8) (2) 281 (8) 181 () 137 Inlet () 118 Inlet (2) HWR-L21 / R Clearance for tube removal at either side 1472(W) 4734(L) (2) 281 Inlet() (H) Inlet(8) 162 (8) 181 () 137 Inlet(2) Clearance for tube removal at either side

35 HWR - L Series Outline_Foudation HWR-L27 / 3 WORLD ENERGY Single Effect Hot Driven bsorption Machine 1. Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m (W) 4776(L) R Inlet (15) (H) Inlet (1) (2) 2364 (1) 218 (15) 1511 L-Outline_Foudation 652 Inlet (2) Clearance for tube removal at either side HWR-L34 / R (W) 488(L) Inlet () 1956 (25) 2616 () 2175 (2) 164 Inlet (2) (H) (25) Clearance for tube removal at either side

36 For Future Energy & Environment Single Effect Hot Driven bsorption Machine Outline_Foudation HWR-L42 / 47 / Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m B C D E F G H I L L L R B 183(W) Inlet () 2284 (3) 31 () 253 (2) (H) Inlet (2) 122 Inlet (3) I 315 Clearance for tube removal at either side G H B C D E F HWR-L6 / 675 / 75 B C D E F G H I L L L R B Inlet (15) (W) (35) 332 (15) 2753 (25) (H) Inlet (25) 1462 Inlet (35) I G H B C D E F Clearance for tube removal at either side

37 HWR - L Series Outline_Foudation HWR-L825 / 9 / 975 WORLD ENERGY Single Effect Hot Driven bsorption Machine 1. Indicates the position of anchor bolt holes. 2. ll external water piping are to be provided by the customer. 3. Indicates the position of the power supply wiring connections to control panel. 4. Installation and service clearance : Longitudinal Distance : 1m Top :.2m : 1.2m Others :.5m B C D E F G H L L L B R6 2329(W) Inlet (3) 4(H) 2796 Inlet (2) 3761 (4) 393 (2) 2386 (3) L- Outline_Foudation 859 Inlet (4) H Clearance for tube removal at either side F G B CDE HWR-L15 / 1 / 13 B C D E F G H L L L (W) R B Inlet (2) 2835 (4) 3681 (2) 2887 (3) 2154 Inlet (3) 4(H) 1565 Inlet (4) H Clearance for tube removal at either side F G B CD E

38 For Future Energy & Environment Thermal Insulation Hot Surfaces Single Effect 2.8 Hot Driven bsorption Machine 19 (3/4 in) : with Box (3/8 in) : Heat Exchanger Body with Piping Cold Surfaces 19 (3/4 in) : Body with Box 1 (3/8 in) : Inlet and Piping of Refrigerant Pump Evapo rator Note 1. Use only Non-inflaable or Incombustible insulation materials. 2. Do not insulate motor of refrigerant pump. 3. Total insulation area includes piping. 4. Do not cover components such as service valves, dampers, diaphragm valves, sight glass, control valves or thermometers or sensor wells. 5. The standard Material and Thickness as the recoendation : HOT Surface insulation Material of insulation : Non-inflaable polymer sponge usable at 12 C Thickness of insulation : 19 (3/4 inch), 1 (3/8 inch) when polymer sponge is used COLD Surface insulation Material of insulation : Closed cell type Non-inflaable polymer sponge Thickness of insulation : 1 (3/8 inch), 19 (3/4 inch) 6. For insulation area for each model, please refer to the picture below. 7. The water box sections should be worked to be disassembled for the repair. 8. If necessary, please perform the finish painting in the field after completing the insulation work. Model () HWR-L3 HWR-L4 HWR-L5 HWR-L6 HWR-L75 HWR-L9 HWR-L11 HWR-L135 HWR-L155 HWR-L18 HWR-L21 HWR-L24 HWR-L27 HWR-L3 Hot Surface(m 2 ) Cold Surface(m 2 ) Model Hot Surface(m 2 ) Cold Surface(m 2 ) () HWR-L HWR-L HWR-L HWR-L HWR-L HWR-L HWR-L HWR-L HWR-L HWR-L HWR-L HWR-L HWR-L

39 WORLD ENERGY bsorption Machines Supply Scope (Standard) Item Chiller ssembly Initial charge Painting Insulation Test & Inspection Performance Test Description 1),,, s 2) Solution Heat Exchanger 3) Pumps - Solution pumps with isolation valves - Refrigerant pump with isolation valves - Purge pump 4) Control panel - Panel unit, circuit Breakers - Switches ( Operation, emergency, man/auto selector) - Relays, controller, touch screen 5) Locally mounted control instruments - flow switch - temperature sensors 6) Purge device - Purge storage tank, Eductor, Liquid trap, Manometer, piping and manual valves 7) Interconnecting piping and wiring - Refrigerant and absorbent piping for internal mechanical components - Control & Power wiring for Internal electrical components bsorbent (Lithium bromide) with inhibitor Refrigerant Painting for chiller assembly and control panel Insulation of hot surface and cold surface for bsorption chiller 1) Check of external dimensions 2) Hydraulic Pressure test for water Boxes 3) Leak Test (Vacuum side) 4) Function test for electric circuit and safety device Factory test or start-up at site Out of supply and work scope for Vendor Installation & wiring work 1. Foundation of chiller 2. Installation of chiller 3. Piping and wiring connections out of Chillers 4. Interlock wiring of chilled water pump and cooling water pump. 5. Installation and wiring of control valve. Scope Vendor Vendor Vendor Option Vendor Option Buyer L-Thermal Insulation / Supply Scope for bsorption Machines Painting Painting type : Epoxy Prime and Epoxy Finish painting Color : Chiller body - Blue (Munsell No. 4. PB3.4/6.7) - Grey (Munsell No.5Y 7/1) ㆍ 2B1 Installation (Korea) 37

40 For Future Energy & Environment Single Effect Double Lift Hot Driven bsorption Machine System Piping P T control valve Hot Diff. Pressure Control Valve Cooling tower M P T Inlet Supply water ir handling unit Bleed off Expansion tank Drain line bsorption chiller P T Chilled / Hot Flow meter water Pump(1st) F P T Inlet Chilled / Hot water Pump(2nd) Bypass valve P T Inlet P Thermostat Pressure Gauge T Temperature Gauge Valve Inlet P T Cooling water pump Drain Valve ir Vent Supply header Return header 1) ll external equipment out of dotted line is scope of customer's. 2) Refer to outline drawing and specification data sheet for the external dimensions of the machine, the location & the diameter of water pipe connection and etc. 3) Driving hot water must be maintained as design temperature. 4) It is strongly recoended to install stop valves at hot water inlet and outlet pipe. 5) The locations of chilled water pumps, cooling water pumps and expansion tanks shall be determined in consideration of the hydrostatic head of pumps and the height of building. nd the Machine shall not be subject to a pressure higher than the designed pressure at any water header. 6) For cooling water quality control, it is recoended to install cooling water bleed-off device on the inlet pipe line of cooling towers. 7) round 1 meshes of strainers are recoended to be installed in the cooling water line. Cooling Quality Control The cooling water which is recycled by cooling tower is exposed into atmosphere and polluted as it is vaporized. If the cooling water gets polluted, it develops corrosion and also scale inside the tubes and bsorption Machine performance drops. 8) For the maintenance and the inspection of the Machine, the following equipment shall be installed on each chilled water and cooling water inlet/outlet lines as well as stop valve. Thermometers and pressure gauges shall be installed at chilled and cooling water inlet/outlet. ir relief valves shall be installed on each chilled and cooling water lines at higher points than each water header. Drain valves shall be installed at the lowest position between the stop valves of chilled and cooling water and the Machine and the drain valve shall be piped to the drain ditch. 9) There shall be a sufficient clearance for access to the absorber, evaporator, condenser, and generator to facilitate inspection and cleaning work. Therefore, it is recoended to control the water quality; the following table shows guideline for cooling water and make-up water. The tube cleaning method and interval depends on each water quality. Standard Reference Items PH (25 C) Conductivity (25 C, s/cm) Chloride ion CI (mg / ci /l) Sulfuric acid ion SO 4 2-(mg CaCo 3 /l) lkalinity ph4.8 (mg CaCo 3 /l) Total hardness (mg CaCO 3 /l) Iron Fe (25 C) Sulfides S 2 - ion (ms S 2 -/l) onium ion NH 4 + (mg NH 4 +/l) Silica SiO (mg SiO 2 /l) Cooling 6.5 ~ 8. Max. 8 Max. 2 Max. 2 Max. 1 Max. 2 Max. 1. No trace Max. 1. Max. 5 Make-up 6.5 ~ 8. Max. 2 Max. 5 Max. 5 Max. 5 Max. 5 Max..3 No trace Max..2 Max. 3 Tendency Corrosion Scale 38

41 WORLD ENERGY 3 Double Effect Exhaust Gas Driven / Single Effect Double Lift Hot bsorption Machine Outline CHP TOUCH S1 S2 S B & HWR-L 1 IRING No. Description 1 Buzzer K5 K1 K2 2 K3 Lamps K4 IN5 L6 L7 88VP 3 Touch screen 4 Buzzer stop 1 5 Purge pump start/stop switch TOUCH S1 S2 S (8) 7 2 TOUCH S1 S2 S PUMP INTERLOCK STRT SIGNL LRM SIGNL 6 7 CHILLED WTER PUMP RUN SIGNL Note Emergency stop switch Power switch COOLING WTER PUMP RUN SIGNL COOLING TOWER FN RUN SIGNL Wiring CHP 3G*1.5*8L CHILLED WTER TEMP. SET SIGNL is field wiring at the site after completion of chiller installation CHILLED WTER TEMP SIGNL R R COOLING WTER TEMP SIGNL TB3 S T S T IR SEL BLWER POWER PURGE PUMP OPERTING SIGNL G*1.5*2L DIVERTER VLVE 4G*1.5 TB4 REMOTE STRT STOP CHILLED WTER PUMP INTERLOCK COOLING WTER PUMP INTERLOCK 25 USER'S WIRING 4 41 STRT SIGNL LRM SIGNL CHILLED WTER PUMP RUN SIGNL ( K5 K1 K2 K3 K4 COOLING WTER PUMP RUN SIGNL 65(6) )dimension for HWR - L series COOLING TOWER FN RUN SIGNL IN5 L6 L7 88VP CHILLED WTER TEMP. SET SIGNL CHILLED WTER TEMP SIGNL COOLING WTER TEMP SIGNL PURGE PUMP OPERTING SIGNL 4 2B - L Piping Diagram / CHP - 2B - L 3G*1.5*3L 3G*1.5*8L 2B & HWR-L Note is field wiring at the site after completion of chiller installation TB TB USER'S WIRING K5 K1 K2 K3 K4 IN5 L6 L7 88VP G G Y O U M HOT WTER CONTROL VLVE 4G*1.5 REMOTE STRT STOP CHILLED WTER PUMP INTERLOCK 3G*1.5*3L COOLING WTER PUMP INTERLOCK STRT SIGNL LRM SIGNL CHILLED WTER PUMP RUN SIGNL COOLING WTER PUMP RUN SIGNL COOLING TOWER FN RUN SIGNL 3G*1.5*8L CHILLED WTER TEMP. SET SIGNL CHILLED WTER TEMP SIGNL COOLING WTER TEMP SIGNL PURGE PUMP OPERTING SIGNL 39

42 For Future Energy & Environment bsorption Machines Counication Protocol (1) RS-485 (2) RS-232 (3) MODBUS (4) PROFIBUS (5) INTERNET Wiring 1) RS-485 Type Pin No. Signal Drection Contents 9 15Pin Female RD(RD+) 12 RDB(RD-) 13 SD(SD+) input input output data receive(+) data receive(-) data send(+) SDB(SD-) output data send(-) (COM2) 15 SG signal ground 1~9 Serial interface for RS232 2) RS ) MODBUS Body side(6pin Male) (9Pin Male) RD 2 RD 3 SG 3 SD SG 6 SD Body side(6pin Male) (MODBUS) RD 2 RD 3 SG 3 SD SG 6 SD RS-485 wiring(modbus Chiller side) Outside(3Pin) Chiller side(9pin) RD 2 RD SG SD SG connet No 1, 4, 5, 6, 9 for 9Pin type, No 11~15 for 15Pin type

43 WORLD ENERGY bsorption Machines 4) PROFIBUS No Description Pin Signal Content B line + RxD / TxD, RS485 level 4 RTS Request to send 5 GND Isolated ground 6 +5V Bus output Isolated +5V line - RxD / TxD, RS485 level Counication Protocol / Wiring 5) INTERNET Ethernet Monitoring Chillers equipped with internet-enabled controller INTERNET User Ethernet RS-485 WEB Server Controller Controller Controller 41

44 For Future Energy & Environment Double Effect Direct Fired bsorption Chiller & Heater Performance Data Chilled Hot Cooling Gas Electric Size Weight Model Cooling Capacity Heating Capacity Pressure Drop Pressure Drop Pressure Drop High Heating Value Inlet Pressure Exhaust gas Power source Ref. Pump bs. Pump Purge Pump Burner Total Total mp. Lenght (L) Width (W) Height (H) Rigging Operation Space for Tube Replacement Note Unit usrt kcal/h mh 2 mh 2 mh 2 m kcal/nm 3 N q - DW5 DW6 DW7 DW8 DW1 DW12 DW15 DW18 DW21 DW24 DW28 DW32 DW36 DW , 1,266 1, ,56 1, ,9 12 / / / , , 5(2q) 4(4,q) 5(4,q) 19 X X X X X 31 3PH, 4V, 5Hz ,95 2,598 2,597 3,68 3,78 4,734 4,776 1,477 1,615 1,81 1,92 2,1 2,2 2, ,9 2,122 2, ,9 1. Working pressure of chilled water/cooling water circuit are based on 1.Mpa [15psig]. 2. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for. 3. Standard power source is 3ph, 4V, 5Hz. vailable 22, 38, 44V and 46V Power source. 4. Catalogue specifications are subject to change without prior notice. 2,4 Double Effect Dierct Fierd Type (5~4RT) 3,4 4,5 42

45 DW Series WORLD ENERGY Double Effect Direct Fired bsorption Chiller & Heater Performance Data Double Effect Dierct Fierd Type (45~15RT) Model Unit DW45 DW5 DW56 DW63 DW7 DW8 DW9 DW1 DW11 DW12 DW13 DW14 DW15 Cooling Capacity usrt 1,582 1, , , , , , ,516 1, 3,868 1,1 4,22 1,2 4,571 1,3 4,923 1,4 5,274 1,5 Heating Capacity kcal/h 1,32 1,135 1,467 1,262 1,643 1,413 1,848 1,59 2,54 1,766 2,347 2,19 2,641 2,523 2,934 2,271 3,227 2,523 3,521 2,776 3,814 3,28 4,18 3,532 4,41 3, / 7 Chilled Pressure Drop mh / 6 Hot Pressure Drop mh / Cooling Gas Pressure Drop High Heating Value Inlet Pressure mh 2 m kcal/nm 3 N q , , 1, , , , , , DW Performance Data 5(4,q) 65(4,q) Exhaust gas 41 X X 5 4 X 62 4 X 9 Power source - 3PH, 4V, 5Hz Ref. Pump bs. Pump Electric Purge Pump Burner Total Tatal mp Lenght (L) 4,88 4,998 5,54 6,38 5,644 6,142 6,667 6,293 6,818 7,318 6,86 7,36 Size Width (W) 2,49 3,55 3,33 3,738 4,46 Height (H) 2,633 2,962 3,31 3,5 3,7 Weight Rigging Operation Space for Tube Replacement 4,5 5,2 5,7 5,2 5,7 6,2 5,7 6,2 6,7 6,2 6,7 Options 1. High Pressure water Boxes boxes rated for 25psig or 3psig working pressure shall be furnished when specified on the equipment specification data. 2. Special Tubes Tubes of non-standard materials and/or wall thickness shall be provided when specified on the equipment specification data. 3. Special operation temperature conditions Special operation temperature shall be provided when specified on the equipment specification data. 43

46 For Future Energy & Environment Double Effect Direct Fired bsorption Chiller & Heater Performance Data Double Effect Direct Fired Type (5~4RT) Chilled Hot Cooling Gas Electric Size Weight Model Cooling Capacity Heating Capacity Pressure Drop Pressure Drop Pressure Drop Power source Ref. Pump Purge Pump Total Tatal mp. Lenght (L) Width (W) Height (H) Rigging Operation Space for Tube Replacement Note High Heating Value Inlet Pressure Exhaust gas bs. Pump1 bs. Pump2 Burner Unit usrt kcal/h mh 2 mh 2 mh 2 m kcal/nm 3 N q - High Efficiency DWH5 DWH6 DWH7 DWH8 DWH1 DWH12 DWH15 DWH18 DWH21 DWH24 DWH28 DWH32 DWH36 DWH , 1,266 1, / / / , , 5(2q) 4(4,q) 5(4,q) 18 x x x x x 31 3PH, 4V, 5Hz ,95 2,598 2,597 3,68 3,78 4,734 4,776 1,477 1,615 1,81 1,92 2,1 2,137 2,27 1,76 2,9 2,122 2, ,9 2,4 3,4 4,5 1. Working pressure of chilled water/cooling water circuit are based on 1.Mpa [15psig]. 2. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for. 3. Standard power source is 3ph, 4V, 5Hz. vailable 22, 38, 44V and 46V Power source. 4. Catalogue specifications are subject to change without prior notice. 44

47 DWH Series WORLD ENERGY Double Effect Direct Fired bsorption Chiller & Heater Performance Data Double Effect Direct Fired Type (45~15RT) High Efficiency Model Unit DWH45 DWH5 DWH56 DWH63 DWH7 DWH8 DWH9 DWH1 DWH11 DWH12 DWH13 DWH14 DWH15 Cooling Capacity usrt 1, , , , , , , ,516 1, 3,868 1,1 4,22 1,2 4,571 1,3 4,923 1,4 5,274 1,5 Heating Capacity kcal/h 1, ,211 1,42 1,357 1,167 1,526 1,313 1,696 1,459 1,938 1,667 2,181 1,875 2,423 2,84 2,665 2,292 2,97 2,5 3,51 2,79 3,392 2,917 3,634 3, 12 / 7 Chilled Pressure Drop mh / 6 Hot Pressure Drop mh Cooling Gas Pressure Drop High Heating Value Inlet Pressure Exhaust gas mh 2 m kcal/nm 3 N q x / , 1,1 1,2 1,3 1,4 1, , , 5 (4,q) 65 (4,q) 35 x 5 4 x 62 4 x 9 5 DWH Performance Data Power source - 3PH, 4V, 5Hz Ref. Pump bs. Pump Electric bs. Pump2 Purge Pump Burner Total Tatal mp Lenght (L) 4,88 4,998 5,54 6,38 5,644 6,142 6,667 6,293 6,818 7,318 6,86 7,36 Size Width (W) 2,469 2,935 3,33 3,929 4,46 Height (H) 2,633 2,962 3,31 3,5 3,7 Weight Rigging Operation Space for Tube Replacement 4,5 5,2 5,7 5,2 5,7 6,2 5,7 6,2 6,7 6,2 6,7 Options 1. High Pressure water Boxes boxes rated for 25psig or 3psig working pressure shall be furnished when specified on the equipment specification data. 2. Special Tubes Tubes of non-standard materials and/or wall thickness shall be provided when specified on the equipment specification data. 3. Special operation temperature conditions Special operation temperature shall be provided when specified on the equipment specification data. 45

48 For Future Energy & Environment Double Effect Exhaust Gas Driven bsorption Chiller and Heater 2 WORLD ENERGY CO.

49 For Future Energy & Environment Cooling Cycle (Cooling Mode) Performance Data Double Effect Steam Fired bsorption chiller WORLD WORLD ENERGY ENERGY Single Effect Double Lift Low Temperature Hot bsorption Chiller Double Effect Steam Fired Type (1~5RT) 1 Chilled Cooling Steam Electric Model Cooling Capacity Pressure Drop Pressure Drop Inlet Pressure Inlet Drain Control Valve Power source Ref. Pump bs. Pump Purge Pump Total Total mp. Unit usrt mh 2 mh 2 MPa kg/h - SW1 SW12 SW15 SW18 SW21 SW24 SW28 SW32 SW36 SW4 SW45 SW , 1,266 1,47 1,582 1, / / ,56 1,232 1,48 1,584 1,76 1,98 2, PH, 4V, 5Hz Single Effect Double Lift Low Temperature Hot bsorption Chiller - Product Feature / Cycle block diagram Lenght (L) 2,597 3,68 3,78 4,734 4,776 4,88 Size Width (W) 1,389 1,652 1,735 1,954 Height (H) 2,2 2,25 2,45 2,6 Weight Rigging Operation Space for Tube Replacement Note 2,4 1. Working pressure of chilled water/cooling water circuit are based on 1.Mpa [15psig]. 2. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for. 3. Standard power source is 3ph, 4V, 5Hz. vailable 22, 38, 44V and 46V Power source. 4. Catalogue specifications are subject to change without prior notice. 3,4 4,5 46 WORLD ENERGY CO. 1

50 For Future Energy & Environment Single Effect Double Lift Low Temperature Hot bsorption Chiller Exhaust-Energy Recovery_vailable exhaust gas from reciprocating engine, gas turbine engine or processor of Factory without additional heat recovery systems. Cost effective cooling and heating_ CHP Series is design to to double-effect cycle providing more efficient usage of the same energy input. Excellent part load performance_ a variable frequency drive pump automatically maintains optimum solution flow to low temp. generator and HTG during whole operation High Efficient heat transfer tubes_newly designed high performance tube enable of heat transfer rate increase. Smaller installation space and saved operation cost PRECISE & OPTIMIZED OPERTION Factory mounted, wired and tested microprocessor-based c o n t r o l l e r m o n i t o r s a n d controls the machine operation continuously and automatically. touch screen display identifies operational status and fault indication. ll components meet internally acceptable codes like UL or CE or KS or equivalents. During the start-up sequence, the controller initiates a self-diagnostic system check to verify that all sensors are in range. Remote start/stop switch and a key-locked control panel door protect a against unauthorized access. Low Noise and Low Vibration Low sound and vibration levels are characteristic of absorption chillers, primarily due to the fact that the only rotating parts are the refrigerant and solution pumps. The overall sound level of The Worldenergy machine is typically 65db. This allows the machines to be installed near occupies spaces or in area with strict sound requirements. Low vibration levels also make it possible to install the chiller on upper floors without special consideration for vibration dampening systems. RELIBILITY & ESY MINTENNCE Hermetically-designed refrigerant and solution pumps which are only moving parts provide reliability and they are field serviceable through pump isolation valves. lso marine-type water box cover on both of the absorber and condenser allows easy tube-cleaning and water-box inspection. nd factory performance test, which is provided as an optional basis, ensure the performance and function of chiller before shipment. RELIBLE PURGE SYSTEM Non-condensable gases are periodically exhausted from the storage tank by a simple procedure performed while the machine is running. Evacuation is performed by a unit mounted vacuum pump that is connected to the purge evacuation valve. LOW MINTENNCE W o r l d e n e r g y a b s o r p t i o n m a c h i n e s h a s n u m e r o u s standard design features that provide for convenient and simple Maintenance. Hinged water box cover on the absorber, and condenser facilitate tube and water box inspection. Epoxy coating of the waterboxes and covers, standard on all machines, protects against corrosion and extend machine life. ll moving parts are easily accessible for inspection or replacement, as required. 2 WORLD ENERGY CO.

51 SW Series WORLD ENERGY Double Effect Steam Fired bsorption chiller Performance Data Double Effect Steam Fired Type (56~15RT) Model Unit SW56 SW63 SW7 SW8 SW9 SW1 SW11 SW12 SW13 SW14 SW15 Cooling Capacity usrt 1,969 2, , , , ,516 1, 3,868 1,1 4,22 1,2 4,571 1,3 4,923 1,4 5,274 1,5 12 / 7 Chilled Pressure Drop mh / 37.5 Cooling Pressure Drop mh , , , , , , Inlet Pressure MPa.8 Steam Inlet kg/h 2,464 2, ,8 3,52 3,96 4,4 4,84 5,28 5, ,61 6,6 6 Drain Control Valve Power source Ref. Pump bs. Pump PH, 4V, 5Hz SW Performance Data Electric Purge Pump Total Total mp Lenght (L) 4,998 5,54 6,38 5, ,667 6,293 6,818 7,318 6,86 7,36 Size Width (W) 2,18 2,66 2,829 3,25 Height (H) 2,9 3,35 3,45 3,65 Weight Rigging Operation Space for Tube Replacement 4,5 5,2 5,7 5,2 5,7 6,2 5,7 6,2 6,7 6,2 6,7 Options 1. High Pressure water Boxes boxes rated for 25psig or 3psig working pressure shall be furnished when specified on the equipment specification data. 2. Special Tubes Tubes of non-standard materials and/or wall thickness shall be provided when specified on the equipment specification data. 3. Special operation temperature conditions Special operation temperature shall be provided when specified on the equipment specification data. 47

52 For Future Energy & Environment Double Effect Steam Fired bsorption chiller Performance Data Double Effect Steam Fired Type (1~5RT) High Efficiency Model Unit SWH1 SWH12 SWH15 SWH18 SWH21 SWH24 SWH28 SWH32 SWH36 SWH4 SWH45 SWH5 Cooling Capacity usrt , 32 1, ,47 4 1, , / 7 Chilled Pressure Drop mh / 37.2 Cooling Pressure Drop mh Inlet Pressure MPa.8 kg/h ,92 1,248 1,44 1,56 1,755 1,95 Steam Inlet Drain 25 4 Control Valve Power source - 3PH / 4V / 5Hz Ref. Pump.3.4 bs. Pump Electric bs. Pump2 Purge Pump Total Tatal mp Lenght (L) 2,597 3,68 3,78 4,734 4,776 4,88 Size Width (W) 1,42 1,652 1,735 1,954 Height (H) 2,2 2,25 2,45 2,6 Weight Rigging Operation Space for Tube Replacement 2,4 3,4 4,5 Note 1. Working pressure of chilled water/cooling water circuit are based on 1.Mpa [15psig]. 2. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for. 3. Standard power source is 3ph, 4V, 5Hz. vailable 22, 38, 44V and 46V Power source. 4. Catalogue specifications are subject to change without prior notice. 48

53 SWH Series WORLD ENERGY Double Effect Steam Fired bsorption chiller Performance Data High Efficiency Double Effect Steam Fired Type (56~15RT) Model Unit SWH56 SWH63 SWH7 SWH8 SWH9 SWH1 SWH11 SWH12 SWH13 SWH14 SWH15 Cooling Capacity usrt 1,969 2, , , , ,516 1, 3,868 1,1 4,22 1,2 4,571 1,3 4,923 1,4 5,274 1,5 12 / 7 Chilled Pressure Drop mh / 37.2 Cooling Pressure Drop mh , , , , , , m Inlet Pressure MPa.8 kg/h 2,184 2,457 2,73 3,12 3,51 3,9 4,29 4,68 5,7 5,46 5,85 Steam Inlet Drain Electric Control Valve Power source Ref. Pump bs. Pump1 bs. Pump2 Purge Pump PH / 4V / 5Hz SWH Performance Data.2 Total Tatal mp Lenght (L) 4,998 5,54 6,38 5,644 6,142 6,667 6,293 6,818 7,318 6,86 7,36 Size Width (W) 2,18 2,66 3, 3,25 Height (H) 2,9 3,35 3,45 3,65 Weight Rigging Operation Space for Tube Replacement 4,5 5,2 5,7 5,2 5,7 6,2 5,7 6,2 6,7 6,2 6,7 Options 1. High Pressure water Boxes boxes rated for 25psig or 3psig working pressure shall be furnished when specified on the equipment specification data. 2. Special Tubes Tubes of non-standard materials and/or wall thickness shall be provided when specified on the equipment specification data. 3. Special operation temperature conditions Special operation temperature shall be provided when specified on the equipment specification data. 49

54 For Future Energy & Environment Single Effect Steam Fired bsorption Chiller Performance Data Single Effect Steam Fired Type (5~4RT) Model Unit S5 S6 S7 S8 S1 S12 S15 S18 S21 S24 S28 S32 S36 S4 Cooling Capacity usrt , 32 1, , / 7 Chilled Pressure Drop mh / 39.4 Cooling Pressure Drop mh Pressure MPa kg/h ,17 1,44 1,638 1,872 2,184 2,496 2,88 3,12 Steam Inlet Drain Control Valve Power source - 3PH / 4V / 5Hz Ref. Pump bs. Pump Electric Purge Pump.4.2 Total Total mpere Length (L) 2,95 2,598 2,597 3,68 3,78 4,734 4,776 Size Width (W) 1,77 1,95 1,244 1,472 1,495 Height (H) 1,88 2,236 2,238 2,521 Weight Rigging Operation Space for Tube Replacement 1,8 2,4 3,4 4,5 Note 1. Working pressure of chilled water/cooling water circuit are based on 1.Mpa [15psig]. 2. Fouling factor.1m 2.h. o C/kcal for and,.1m 2.h. o C/kcal for. 3. Standard power source is 3ph, 4V, 5Hz. vailable 22, 38, 44V and 46V Power source. 4. Catalogue specifications are subject to change without prior notice. 5

55 S Series WORLD ENERGY Single Effect Steam Fired bsorption Chiller Performance Data Single Effect Steam Fired Type (45~15RT) Model Unit S45 S5 S56 S63 S7 S8 S9 S1 S11 S12 S13 S14 S15 Cooling Capacity usrt 1, , , , , , , ,516 1, 3,868 1,1 4,22 1,2 4,571 1,3 4,923 1,4 5,274 1,5 12 / 7 Chilled Pressure Drop mh / 39.4 Cooling Pressure Drop mh , , , , , , m Pressure MPa.15 kg/h 3,51 3,9 4,368 4,914 5,46 6,24 7,2 7,8 8,58 9,36 1,14 1,92 11,7 Steam Inlet Drain Control Valve Power source PH / 4V / 5Hz 2 7 Electric Ref. Pump bs. Pump Purge Pump Total S Performance Data Total mpere Length (L) 4,88 4,998 5,54 6,38 5,644 6,142 6,667 6,293 6,818 7,318 6,86 7,36 Size Width (W) 1,594 1,83 2,26 2,329 2,929 Height (H) 2,799 3,244 3,522 3,9 3,95 Weight Rigging Operation Space for Tube Replacement 4,5 5,2 5,7 5,2 5,7 6,2 5,7 6,2 6,7 6,2 6,7 Options 1. High Pressure water Boxes boxes rated for 25psig or 3psig working pressure shall be furnished when specified on the equipment specification data. 2. Special Tubes Tubes of non-standard materials and/or wall thickness shall be provided when specified on the equipment specification data. 3. Special operation temperature conditions Special operation temperature shall be provided when specified on the equipment specification data. 51

56 For Future Energy & Environment bsorption Heat Pump Performance Data HPS Series Model Heating capacity Hot P. Drop Recovery Heat Capacity Waste Hot Steam side Electric Size Weight P. Drop Inlet Drain Valve Power source bsb. Pump Ref. Pump Purge Pump Total mpare Lenght (L) Width (W) Height (H) Rigging Operation Max. Shipping Shipment Type Space for Tube Replacement HPD Series Unit Mcal/h /h mq Mcal/h mq kg/h - () () () () HPS1 HPS12 HPS15 HPS18 HPS21 HPS24 HPS28 HPS32 HPS36 HPS4 HPS45 HPS5 HPS56 HPS63 HPS / ,21 1,134 1,27 1,429 1,588 3 / Steam Fired Type bsorption Heat Pump (67 ~ 4686) ø, 4V, 5Hz 1.5 (5.4) 3. (7.5) 3.4 (1.2).3 (1.5).4 (1.6).4 (1.).3 (.5) ,436 3,456 3,56 4,526 4,66 4,666 1,335 1,495 1,558 1,689 1,98 2,37 2, One Body 2,4 3,4 4, (15.) 1.5 (4) 2.5 5,28 1,861 3, Two Body 5,2 Model Unit HPD1 HPD12 HPD15 HPD18 HPD21 HPD24 HPD28 HPD32 HPD36 HPD4 HPD45 HPD5 HPD56 HPD63 HPD7 Hot Hot capacity Mcal/h /h / P. Drop mq Waste Waste Heat Capacity P. Drop Mcal/h mq / , , , , , LNG(1,5kcal/Nm 2 ) LPG(12,kcal/kg) Nm 2 /h kg/h Supply pressure q 4, fuel consumption Gas connection 4 5 Kerosene(1,96kcal/l ) Diesel(11,1kcal/l ) l/h l/h Oil 15 x 2 2 x 2 Power source - 3ø, 4V, 5HZ bsb. Pump () 1.5 (5.4) 3. (7.5) 3.4 (1.2) 5.5 (15.) 1.5 (4) Ref. Pump ().3 (1.5).4 (1.6) 1.5 (4) Electric Gas Burner () 1.5 (3.5) 2.2 (5.) 3.7 (8.1) 4. (1.5) 7.5 (18.6) Oil Burner Purge Pump () () 1.5 (3.5) 2.2 (5.) 3.7 (8.1) 6.3 (13.1).4 (1.) 8.6 (21.9) KV.3 (.5) Total mpare 11.9/ / / / / / / / /42.4 Lenght (L) 2,643 2,843 3,456 3,645 4,526 4,66 4,666 5,26 5,76 Size Width (W) 1,98 2,37 2,315 2,461 2,557 2,59 2,819 2,965 3,263 Height (H) 1,93 2,37 2,7 3,1 Rigging Weight Operation Max. Shipping Shipment Type - One Body Two Body Exhaust Duct 28*21 31*31 36*31 41*31 35*35 4*62 Space for Tube Replacement 2,4 3,4 4,5 5,2 5, , ,7 Direct Fired Type bsorption Heat Pump (67 ~ 4686) 52

57 HPS, HPD, HT Series WORLD ENERGY bsorption Heat Pump Waste Steam Performance Data HT Series Hot Cooling Electric Size Model Heating Capacity flow rate Inlet Temp. Temp. Pre. Drop Max. Working Pressure Waste Heat Capacity Temp. Drain Max. Working Pre Inlet Temp. Temp. Pre. Drop Condition Max. Working Power source bs. Pump Ref. Pump-1 Ref. Pump-2 Purge Pump Lenght (L) Width (W) Height (H) Operation Unit HT-56 HT-11 HT-165 HT-22 HT-225 HT-33 HT-38 kcal/h 3, 6, 9, 1,2, 1,5, 1,8, 2,1, mq kg/cm 2 G kcal/h 625, 1,25, 1,875, 2,5, 3,, 3,75, 4,375, kg/cm 2 G /h mq kg/cm 2 G - V ,47 2,45 4, ,645 3,5 4, ,68 3,26 5,1 36 Indurstrial 4.5 3ø, 4V, 5Hz ,87 3,24 5,12 48 Steam Generation bsorption Heat Pump ,87 3,31 5, ,15 3,585 5, ,735 4, 5, HPS - HPD - HT Performance Data Note 1. vailable model will be selected as Temperature condition of Waste water and. 2. Waste water side tube material is 9/1 Cupro Nickel. Tube material may be changed as the waste water and hot water condition. 3. Standard power source is 3ph, 4V, 5Hz. vailable 22, 38, 44V and 46V Power source. 4. Please consult with sale person in case of the other fuel condition. Do not available Buncker C oil. 1/h bsorption Heat Pump Installation [Korea] 53

58 Installation Records Single Effect Double Lift Driven Type 2B47, 2B42, Total 223 usrt Location : Korea Single Effect Double Lift Driven Type 2B47, Total 91 usrt Location : Korea Single Effect Double Lift Driven Type 2B135, Total 26 usrt Location : Korea Single Effect Double Lift Driven Type 2B75, 75 usrt Location : Korea Single Effect Hot Driven Type HWR-L11, 11 usrt Location : U.S.. Single Effect Double Lift Driven Type 2B155, 156 usrt Location : Germany Double Effect Exhaust Gas Driven Type CHP24, 24 usrt Location : Germany Heat Exchanger for Fuel Cell HEX92, Capacity 4 Location : U.S.. 54

59 WORLD ENERGY bsorption Chiller Heat Pump Single Effect Steam Fired bsorption Chiller S13, S56, L75, Total 7,8 usrt (Explotion Protection) Location : Korea Evaporating for MVR (Mecanical Vapor Recompression System) Steam Generating Capacity 5 /h Location : Korea Single Effect Steam Fired bsorption Chiller S5, 5 usrt (Explotion Protection) Location : Korea Single Effect Double Lift Driven Type 2B, 24, 22 usrt Location : Korea 9 Single Effect Hot Driven Type HWR-L1, 1422 usrt (Explotion Protection) Location : Korea Single Effect Double Lift Driven Type 2B975, 2B24, Total 1,36 usrt Location : Taiwan Installation Records Single Effect Double Lift Driven Type 2B825, 2B27, 1,1 usrt Location : Taiwan Single Effect Double Lift Driven Type 2B24, 24 usrt Location : Korea 55

60 For Future Energy & Environment - We-bs-Gen Print Office 388-1(34B-5L), Daeyami-dong, Gunpo-si, Gyeonggi-do, 435-6, Korea Tel Fax International Sales Representative PROMORE Corporation Ltd. THOE 26B, Illkwang Bldg., Seosho-Dong, Secho-Gu, Seoul, Korea Tel / Fax , charles@promorecorp.com

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