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DISTRICT HEATING and DISTRICT COOLING / DESALINATION  USING AMMONIA HEATPUMPS David Pearson Director of Innovation Star Refrigeration Stephen Appleton Associate Director Ramboll
Introduction Introduction Low carbon  heating and cooling
Introduction ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Introduction Introduction 90˚C Ammonia Heatpump Low carbon  heating and cooling
90 ˚C Ammonia Heatpump Typical  selection 10Bar Diff 90 °C System 24Bar Diff
90 ˚C Ammonia Heatpump ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Introduction 90˚C Ammonia Heatpump Introduction 90˚C Ammonia Heatpump Applications for Neatpumps Low carbon  heating and cooling
Applications for Neatpumps ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Applications for Neatpumps
Introduction Introduction 90˚C Ammonia Heatpump Applications for Neatpumps 90˚C Ammonia Heatpump Applications for Neatpumps District Heating Low carbon  heating and cooling
90 ˚C Ammonia Heatpump Interstage @ 58C HOR = 14.05MW R eff = 9.61MW COPh = 3.16
90 ˚C Ammonia Heatpump Interstage @ 58C HOR = 14.05MW R eff = 9.61MW COPh = 3.16
District heating The World’s Largest  Natural  District Heat Pump –Drammen, Norway 2011
District heating The World’s Largest  Natural  District Heat Pump –Drammen, Norway 2011 ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
District heating The World’s Largest  Natural  District Heat Pump –Drammen, Norway 2011 ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
90˚C Ammonia Heatpump 90˚C Ammonia Heatpump Introduction Applications for Neatpumps District Heating Applications for Neatpumps District Heating Introduction District Cooling / Desalination Low carbon  heating and cooling
District Cooling and Desalination Stephen Appleton,  Associate Director   Ramboll 2010 ,[object Object],[object Object]
District Cooling and Desalination
District Cooling and Desalination ,[object Object],[object Object]
District Cooling and Desalination
District Cooling and Desalination ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
District Cooling and Desalination ,[object Object],[object Object],Typical District Cooling COPc = 4.0 10MW Cooling 2.5MW Power 12.5MW Waste Heat Combined DC and Desalination COPc = 2.0 10MW Cooling 5.0MW Power (extra 2.5MW) 15MW Waste Heat Incremental COPh = 15/2.5 =6.0 “ Free” waste heat from Power plants is without this energy cost BUT,  Power plants are not as convenient an energy source as District Cooling.
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Low carbon heating and cooling Thankyou! District Heating Applications for Neatpumps 90˚C Ammonia Heatpump Introduction District Cooling / Desalination

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District Cooling And Desalination