Transcript

‘06‘05‘04‘03‘68 ‘91 ‘98 ‘02

ACC 0.48

ROBURENTERS INTO THE

ABSORPTION TECHNOLOGY

0.64ACF

ACC/ACF Chiller

WATER-AMMONIA GAS ABSORPTION EFFICIENCY EVOLUTION

‘06‘05‘04‘03‘68 ‘91 ‘98 ‘02

ACC 0.48

ROBURENTERS INTO THE

ABSORPTION TECHNOLOGY

0.64ACF

1.57ACF HR

ACC/ACF ChillerACF-HR Chiller with Heat Recovery

WATER-AMMONIA GAS ABSORPTION EFFICIENCY EVOLUTION

‘06‘05‘04‘03‘68 ‘91 ‘98 ‘02

ACC 0.48

ROBURENTERS INTO THE

ABSORPTION TECHNOLOGY

0.64ACF

1.25

W LB

1.57ACF HR

0.49

ACC/ACF Chiller

GAHP-W LB Heat Pump engineered for ground source energy use for the ALTERNATE production of hot and chilled water

ACF-HR Chiller with Heat Recovery

WATER-AMMONIA GAS ABSORPTION EFFICIENCY EVOLUTION

‘06‘05‘04‘03‘68 ‘91 ‘98 ‘02

ACC 0.48

ROBURENTERS INTO THE

ABSORPTION TECHNOLOGY

0.64ACF

1.25

W LB

1.30

A

1.57ACF HR

0.49

ACC/ACF Chiller

GAHP-W LB Heat Pump engineered for ground source energy use for the ALTERNATE production of hot and chilled water

GAHP-A Heat Pump for heating only

ACF-HR Chiller with Heat Recovery

WATER-AMMONIA GAS ABSORPTION EFFICIENCY EVOLUTION

‘06‘05‘04‘03‘68 ‘91 ‘98 ‘02

1.96

W

ACC 0.48

ROBURENTERS INTO THE

ABSORPTION TECHNOLOGY

0.64ACF

1.25

W LB

1.30

A

1.57ACF HR

0.49

GAHP-W Heat Pump for SIMULTANEOUS production of hot and chilled water

ACC/ACF Chiller

GAHP-W LB Heat Pump engineered for ground source energy use for the ALTERNATE production of hot and chilled water

GAHP-A Heat Pump for heating only

ACF-HR Chiller with Heat Recovery

WATER-AMMONIA GAS ABSORPTION EFFICIENCY EVOLUTION

‘06‘05‘04‘03‘68 ‘91 ‘98 ‘02

1.96

W

ACC 0.48

ROBURENTERS INTO THE

ABSORPTION TECHNOLOGY

0.64ACF

0.60

1.25

W LB

1.30

A

1.57ACF HR

1.26

AR

0.49

GAHP-W Heat Pump for SIMULTANEOUS production of hot and chilled water

ACC/ACF Chiller

GAHP-W LB Heat Pump engineered for ground source energy use for the ALTERNATE production of hot and chilled water

GAHP-A Heat Pump for heating only

ACF-HR Chiller with Heat Recovery

GAHP-AR Reversible Heat Pump for ALTERNATE production of hot and chilled water

WATER-AMMONIA GAS ABSORPTION EFFICIENCY EVOLUTION


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