Series VENTS VUT R WH ЕС
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1 AIR HANDLING UNITS WITH HEAT RECOVERY Series VENTS EH ЕС Series VENTS WH ЕС Air handling units with the air capacity up to 1500 m 3 /h in soundand heat-insulated casing with integrated electric heater. Recuperating efficiency up to 85%. Air handling units with heat recovery with the air capacity up to 1500 m 3 /h in sound- and heat insulated casing with integrated water heater. Recuperating efficiency up to 85%. Description The air handling units EH EC with an integrated electric heater or WH EC with an integrated water heater are the ready-to-use ventilation units that provide air filtering, supply of fresh air to the premises and exhaust of stale extract air from the premises with synchronous thermal energy transfer from extract air flow to the supply air flow through the rotary heat exchanger. The models are used in ventilation and air conditioning systems installed in various premises that require reasonable energy saving solutions and controlled ventilation systems. EC motors reduce energy demand by times and ensure high performance and low noise operation. All the models are designed for connection to Ø 160, 250 and 315 mm round air ducts. Modifications EH EC models with electric heater. WH EC models with water (glycol) heater. Casing The casing consists of a frame and three-layer 20 mm ( mm) thick panels made of AlZn plate internally filled with mineral cotton for reliable sound- and thermal insulation. Due to the specially designed removable side panels the unit requires little space for servicing and accessing to all the unit components. Filter G4/F7 supply and G4 exhaust filters prevent dirt ingress into the the room and are the essential components that protect that unit elements against soiling. Motor The units are equipped with high-efficient direct current electronically-commutated (EC) motors with external rotor and backward curved impeller blades. Such motor design is the most progressive solution in energy saving. EC motors are featured with high performance and well controllable speed range. Premium efficiency reaching 90% is a definite advantage of electronically commutated motors. Rotary heat exchanger The rotary heat exchanger is a rotating short cylinder internally filled with corrugated aluminium band placed in such a way as to ensure passing of the supply and exhaust air streams through the heat exchanger but to exclude their direct contact. While rotating of the heat exchanger the band inside of it first comes in contact with supply air stream and then with exhaust air stream. Consequently the aluminium band is heated up and cooled down by turns and recuperates the thermal energy and Designation key: Series Energy recovery unit Rated air capacity [m 3 /h] Heater type Duct connection Motor type Control panel VENTS VUT R rotary heat exchanger 400; 700; 900; 1200; 1500 E electric heater W water heater H horizontal EC synchronous electronically commutated motor А 13 Accessories page 336 page 336 page 390 page 392 page 398 page
2 moisture contained in the warm extract air to cold intake air flow from outside. The advantages of the rotary heat exchanger as compared to the plate airto-air heat exchangers include higher efficiency, maintaining comfortable indoor humidity level and extremely low freezing danger (it is nearly zero for rated temperature and humidity conditions). Intake air Supply air Exhaust air Extract air Rotary heat exchanger operating logic Heater Electric heaters ( EH EC models) or water heaters ( WH EC models) are used for application of the air handling unit at low outdoor temperatures. If heat recovery is not sufficient to reach the set supply air temperature, the air heater is turned automatically on and warms up the supply air flow. The heaters are equipped with protecting devices to ensure safe and reliable operation of the unit. The water heaters are designed for max. operating pressure 1.0 MPa (10 bar) and max. heat medium operating temperature 95 C. Control and automation The unit is equipped with a built-in automation system and a multi-functional touch control panel. The standard delivery set includes a 10 m cable for connection to the control panel. EH EC automation functions: turning the unit on and off according to set parameters; week-scheduled operation; setting of the required supply air temperature and air flow with an external control panel; regulation of air control dampers; filter clogging degree; electric heating elements overheating protection (operating and emergency thermostats). WH EC automation functions: turning the unit on and off according to set parameters; week-scheduled operation; setting of the required supply air temperature and air flow with an external control panel; regulation of air control dampers; filter clogging degree; supply air temperature control by means of actuating the three-way valve; circulating pump control; water (glycol) heater freezing protection based on air temperature sensor after the heater and on return medium thermostat. Mounting The air handling unit is suitable for mounting on a level surface, to the ceiling or to wall with mounting brackets. Service access is from the side panel on the left (along supply air stream). In the unit WH EC the water heater pipes are leaded outside to the service side. The air handling unit is suitable for mounting on a level surface, to the ceiling or to wall with mounting brackets. Service access is on side of service panels of the side panel on the left (along supply air stream). In the unit WH EC the water heater pipes are leaded outside to the service side on the left from supply air side. Overall dimensions: Dimensions [mm] Type D А E F G L1 H J L 400 EH ЕС / 400 WH ЕС EH ЕС / 700 WH ЕС EH ЕС / 900 WH ЕС EH ЕС / 1200 WH ЕС EH ЕС / 1500 WH ЕС VENTS 400 EH ЕС / 400 WH ЕС VENTS 700 EH ЕС / 700 WH ЕС VENTS 900 EH ЕС / 900 WH ЕС VENTS 1200 EH ЕС / 1200 WH ЕС VENTS 1500 EH ЕС / 1500 WH ЕС VENTS EH ЕС/ WH ЕС AIR HANDLING UNIT WITH HEAT RECOVERY SERIES L L L1 E E H ØD G F H ØD G F A J A J VENTS. Industrial and commercial ventilation
3 AIR HANDLING UNITS WITH HEAT RECOVERY Technical data: 400 EH ЕС 400 WH ЕС 700 EH ЕС 700 WH ЕС 900 EH ЕС 900 WH ЕС Voltage [V / 50 Hz] 1~ 230 1~ 230 3~ 380 1~ 230 Max. fan power [W] 2 pcs. х 2 pcs. х pcs. х 135 Electric heater power [kw] 2,0 3,3 4,5 Total unit power [W] Total unit current [А] 9,9 1,2 15,8 1,4 7,2 1,9 Maximum air capacity [m 3 /h] Rotation speed [min -1 ] up to 3 up to 2600 up to 2600 Sound power level at 3 m [dba] Transported air temperature [ С] Casing material alumozink alumozink alumozink Insulation 20 mm mineral wool 20 mm mineral wool 20 mm mineral wool Extract filter G4 G4 G4 Supply filter G4 (F7) G4 (F7) G4 (F7) Connected air duct diameter [mm] Ø160 Ø250 Ø250 Weight [kg] efficiency [%] Heat exchanger type rotary rotary rotary Heat exchanger material aluminium aluminium aluminium VENTS EH (WH) ЕС VENTS EH (WH) ЕС 400 EH (WH) EC 700 EH (WH) EC 400 EH (WH) EC 700 EH (WH) EC 290 VENTS. Industrial and commercial ventilation
4 Technical data: 1200 EH ЕС 1200 WH ЕС 1500 EH ЕС 1500 WH ЕС Voltage [V / 50 Hz] 3~ 380 1~ 230 3~ 380 1~ 230 Max. fan power [W] 2 pcs. х pcs. х 222 Electric heater power [kw] 6,0 9,0 Total unit power [W] Total unit current [А] 9,5 2,5 14,1 3,2 Maximum air capacity [m 3 /h] Rotation speed [min -1 ] up to 1930 up to 2000 Sound power level at 3 m [dba] Transported air temperature [ С] Casing material alumozink alumozink Insulation 20 mm mineral wool 25 mm mineral wool Extract filter G4 G4 Supply filter G4 (F7) G4 (F7) Connected air duct diameter [mm] Ø315 Ø315 Weight [kg] efficiency [%] Heat exchanger type rotary rotary Heat exchanger material aluminium aluminium VENTS EH (WH) ЕС VENTS EH (WH) ЕС 900 EH (WH) EC EH (WH) EC VENTS EH ЕС/ WH ЕС AIR HANDLING UNIT WITH HEAT RECOVERY SERIES 900 EH (WH) EC EH (WH) EC 70 VENTS. Industrial and commercial ventilation
5 AIR HANDLING UNITS WITH HEAT RECOVERY VENTS EH (WH) ЕС Calculation of air temperature at heat exchanger outlet: EH (WH) EC t = t int +k eff *(t ext - t int ) /, Where t int intake air temperature С, t ext extract air temperature С, k eff heat exchanger efficiency (as per diagram), % EH (WH) EC Calculation of water heater parameters Air temperature after heater [ C] 400 / 700 / 900 WH ЕС VENTS WH ЕС Coil heating capacity [kw] External air temperature [ C] 70 Air speed inside the coil [m/s] Air flow through the coil [m 3 /h] Water pressure drop [kpa] How to use water heater diagrams Air Speed. Starting from 650 m 3 /h on the air flow scale draw a vertical line till the air speed axis which makes about 2.35 m/s. Water flow through the coil [l/s] Supply air temperature. Prolong the line up to the point where it crosses the outside air temperature (blue curve), e.g. +5 C; then draw a horizontal line from this point to the left till crossing water in/out temperature curve (70/50 C). From this point draw a vertical line to the supply air temperature axis on top of the graphic (+26 С). Heating coil capacity. Prolong the line up to the point where it crosses the outside air temperature indicated as red curve (e.g., +5 С) and draw a horizontal line from this point to the right to the intersection of water in/out temperature curve (e.g., 70/50 С). From this point draw a vertical line up to the scale of heating coil capacity (5.8 kw). Water flow. Prolong the line down to water flow axis at the bottom of the graphic (0.04 l/s). Water pressure drop. Draw the line from the point where line crosses the black curve to the pressure drop axis. (0.5 kpa). 292 VENTS. Industrial and commercial ventilation
6 Calculation of water heater parameters temperature after heater [ C] 1200 WH ЕС VENTS WH ЕС Coil heating capacity [kw] AIR HANDLING UNIT WITH HEAT RECOVERY SERIES VENTS EH ЕС/ WH ЕС External air temperature [ C] Air speed inside the coil [m/s] Air flow through the coil [m 3 /h] Water pressure drop [kpa] How to use water heater diagrams Air Speed. Starting from 0 m 3 /h on the air flow scale draw a vertical line till the air speed axis which makes about 2.22 m/s. Water flow through the coil [l/s] Supply air temperature. Prolong the line up to the point where it crosses the outside air temperature (blue curve), e.g. +5 C; then draw a horizontal line from this point to the left till crossing water in/out temperature curve (70/50 C). From this point draw a vertical line to the supply air temperature axis on top of the graphic (+28 С). Heating coil capacity. Prolong the line up to the point where it crosses the outside air temperature indicated as red curve (e.g., +5 С) and draw a horizontal line from this point to the right to the intersection of water in/out temperature curve (e.g., 70/50 С). From this point draw a vertical line up to the scale of heating coil capacity (9.0 kw). Water flow. Prolong the line down to water flow axis at the bottom of the graphic (0.11 l/s). Water pressure drop. Draw the line from the point where line crosses the black curve to the pressure drop axis. (0.8 kpa). VENTS WH ЕС Air temperature after heater [ C] 1500 WH ЕС Coil heating capacity [kw] External air temperature [ C] Air speed inside the coil [m/s] Air flow through the coil [m 3 /h] Water pressure drop [kpa] Water flow through the coil [l/s] How to use water heater diagrams Air Speed. Starting from 1200 m 3 /h on the air flow scale draw a vertical line till the air speed axis which makes about 2.25 m/s. Supply air temperature. Prolong the line up to the point where it crosses the outside air temperature (blue curve), e.g. +5 C; then draw a horizontal line from this point to the left till crossing water in/out temperature curve (70/50 C). From this point draw a vertical line to the supply air temperature axis on top of the graphic (+27 С). Heating coil capacity. Prolong the line up to the point where it crosses the outside air temperature indicated as red curve (e.g., +5 С) and draw a horizontal line from this point to the right to the intersection of water in/out temperature curve (e.g., 70/50 С). From this point draw a vertical line up to the scale of heating coil capacity (11.0 kw). Water flow. Prolong the line down to water flow axis at the bottom of the graphic (0.13 l/s). Water pressure drop. Draw the line from the point where line crosses the black curve to the pressure drop axis. (0.8 kpa). VENTS. Industrial and commercial ventilation
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