Reducing Refrigerant Leakage

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Transcription:

Reducing Refrigerant Leakage Mike Nankivell F.Inst.R Marketing Director Space Airconditioning plc President of HEVAC Chairman ACRIB F Gas Group

An Introduction to Real Zero Information provided by Cool Concerns Ltd

Real Zero Provide information and help to RAC industry to reduce refrigerant leakage Funded by Carbon Trust, IoR and industry Managed by IoR April 2008 to April 2009 with an ongoing impact Now part of EU funded European projects

Agenda 1. Introduction to Real Zero 2. Impact of leaks 3. Regulations and standards 4. Leak reduction Design Installation Service and maintenance 5. Leak testing during maintenance 6. Successes

Leakage Refrigerant leakage was a problem It s why CFCs were banned, why HCFCs are being phased out and why HFC may be phased down and in some cases banned. Refrigerant leakage is still a problem Refrigeration leakage will always be a problem?

Impact of Leaks Scale of the problem Environmental impact Effect on performance Cost

The Scale of the Problem System type Direct emissions MTCDe Indirect emissions MTCDe Total global warming impact MTCDe Retail 9.0 23.0 32.0 28% Industrial 3.4 25.0 28.4 12% DX AC 2.6 10.0 12.6 21% Small commercial 1.8 12.0 13.8 13% Chillers 0.7 12.0 12.7 6% Other small hermetic 0.3 12.0 12.3 2.5% % related to refrigerant emissions

Global Warming Potential Refrigerant Type GWP R134a HFC 1300 R404A HFC 3260 R407C HFC 1520 R410A HFC 1720 R407A HFC 1770 R1234ze HFO 6 R32 HFC 650 R22 HCFC 1500 R600a, R290, R1270 HC 3 R744 CO 2 1

What GWP Means R404A GWP = 3260 CO 2 GWP = 1 1 kg R404A has 3260 x impact of 1 kg CO 2

CO 2 and Climate Change 1 kwh electricity produces 0.537 kg CO 2 1 kg R404A has same impact as 6070 kwh (3260 / 0.537 = 6070) Same as running a 1 kw electric heater for 77 weeks

CO 2 and Climate Change A typical service van produces 0.3027 kg CO 2 per mile 1 kg R404A (leaked) has same impact as 10,770 miles (3260 / 0.3027 = 10,770)

Other Costs of Leakage Refrigerant Service time Down time Increased energy consumption 24 / 7 Green image

Effect of Leakage

Example of Cost of Leakage: Cost to a Retailer of Leaks To pay for a leak repair of 2 x R404A cylinders the retailer needs to sell: 26,500 litres of milk or 5,300 Big Macs (Greenchill website stats - USA)

Summary Impact of Leaks More energy consumed Refrigerant and service Stock loss Contractor profit Environmental Energy and refrigerant

Regulations and Standards ODS regulation F Gas Regulation EN378

F Gas Regulation All about containment: Leak test Frequency Method Qualifications Labelling Records (systems > 3kg HFC)

Standards and Codes EN378:2008 / 2009 Refrigerating systems and heat pumps Safety and environmental requirements IoR Codes of Practice (A1 and A2/A3 refrigerants)

EN378 Refrigerating systems and heat pumps Safety and environmental requirements Joint type Maximum pressure (PS) Pressure testing for strength and leak tightness Over pressure protection Leak detection

Summary F Gas requires leak testing and repair It sets a minimum standards F Gas and EN378 an essential part of leak reduction

Leak Reduction Design Installation Service and Maintenance

13 Common Leak Points Uncapped valves Schraders Flared joints Pressure switches and connections Seals and more

Key Design, install and commission to appropriate standards actually DO IT! Time to Install Pressure test To fail and re test Evacuate Pre commission Run and commission

Refrigerant Type and GWP Do not select on basis of GWP only Consider Pressures Performance Material compatibility Safety

LOW GWP Refrigerants: Hydrocarbons (R290, R1270) GWP 3 Flammable Limits charge sizes therefore limits application (EN378) Performance better than HFCs in some applications Can be up to 20% increase in efficiency Good materials compatibility Many UK engineers already trained

HC Example - Waitrose Water cooled integrals HC in cabinets and chillers 80 kg total on site Max single charge < 10 kg Most systems < 1 kg Leakage < 2% Factory processed systems Minimum leak potential More care due to use of flammable refrigerant

LOW GWP Refrigerants: Carbon Dioxide (R744) GWP 1 Very high pressures Very high refrigerating effect Efficiency lower than HFC New components required Training a significant issue Wide range of systems types Higher production costs

R744 Systems Leak Use of R744 has not solved leak problems Perception R744 leaks do not matter (GWP = 1) Typically > 100% leakage rate / year High pressures Greater system complexity Installed to same poor level as HFC systems

LOW GWP Refrigerants: HFOs, e.g. R1234ze GWP 6 Mild flammability (A2) Capacity lower than R134a New compressors needed Still at development stage Expensive at present

R32 (Difluoromethane) Mild flammability (A2) Proposed for use in low charge AC systems Daikin Mitsubishi Performance and operating conditions similar to (slightly better than) R410A Used as a component in R407C and R410A GWP = 650

Reducing the Charge Amount Minimise the load Do not oversize the system Split the load Indirect systems Receiver size Pipe size, including evaps and conds E.g. micro bore heat exchangers

Keeping Pressures Low Consider water cooled or evaporative condensers Reduce head pressure control Air cooled condensers: No air flow restriction No air recirculation Consider refrigerant options, e.g. R134a vs R404A

Pipe Work HP / LP switch connections Pipe gauge Pipe support Anti vibration Jointing

Installation and Commissioning Wet rag ball valves and solenoid valves Strip globe valves Remove Schrader cores, replace correctly Pressure test for strength and leak tightness Allow time for pressure testing and for problems Evacuate Charge correct amount

Installation: Split AC Indoor unit remove flares and braze directly Outdoor unit use flare solder adaptors

Servicing to Stop Leaks Valves Flanges Joints Seals Pressure switches Appropriate maintenance

Schrader Valves Use correct core Remove core when brazing Tighten core to the correct torque

Cap Valves Uncapped valves are a major source of leakage Real Zero cap

Flanges Remove old gasket Fit new gasket Torque flange bolts 3 5 8 1 2 7 6 4

Flared Joints Avoid using where possible Where flares are necessary: Use flare solder adaptors Tighten to correct torque

Seals Check and change seals if necessary (especially during retrofit) Oil seals

Pressure Switch Couplers Use flexible couplers - ensure not under tension / twisted and appropriate for the oil type Avoid oil logging in lines No vibration or chafing Support switch Don t use manual made flare

Maintenance to Reduce Leak Potential Reduce head pressure by: Cleaning condensers Ensuring head pressure control is not too high Checking condenser fans / pumps work Reduce vibration effects: Compressor and fan motor mountings Pipe support Effectiveness of vibration eliminators Pipes not chafing

Summary Leak Reduction Design, installation and service specification is important Standards (e.g. EN378) help Most is common sense and good practice Commitment to leakage reduction is needed

Leak Detection

For Effective Leak Testing (1) Check logs Be methodical Use the appropriate method(s) Check the whole system Remember most common leak points

For Effective Leak Testing (2) Check high side while running at highest pressure possible, check low side when off if possible Switch off fans if possible Don t assume the first leak is the only leak Repair all leaks found immediately, re check within 30 days Treat leak testing as a priority activity

Leak testing Success Story Asda / City Refrigeration Bacharach leak detector Monthly leak tests Sharing information Leak reduction a high priority for all 54% leak rate in 2000, 7.9% leak rate in 2011

See Booklet Pocket Guide to Good Leak testing

Summary, Leak Testing Use the appropriate method or combination of methods Ensure it works! Do a thorough leak test Repair all leaks found

And Finally

Are Surveys Worthwhile? Real Zero surveyed 30 sites mix of retail, industrial and AC 30% were leaking 41% low on refrigerant Incomplete F Gas records Leak rate range as % of charge Position of leaks Insufficient leak testing Range of practical recommendations

Leakage Refrigerant leakage was a problem It s why CFCs were banned and HCFCs are being phased out and now HFCs will be phased down or banned Refrigerant leakage is still a problem Will refrigeration leakage always be a problem? Leaks can be eliminated by prioritising leak reduction appropriately

Summary of What Reduces Leaks System design Waitrose example virtually eliminates site install and used small charge systems Thorough leak testing Asda regime and leak detection Prioritising leak reduction Awareness Technician training

www.realzero.org.uk www.coolconcerns.co.uk Next Real Zero courses: One day sessions - 1 st October & 4 th November Half day session for technicians - 2 nd & 24 th October Also can be scheduled to suit

Reducing Refrigerant Leakage Thank you for listening! Mike Nankivell F.Inst.R Marketing Director Space Airconditioning plc President of HEVAC Chairman ACRIB F Gas Group