A manufacturer conducted an experiment for an evaporator capacity 507 kW cooling and designed for high COP of 1.8 when using lithium bromide plus water in an absorption refrigeration system. The evaporator operates 20 C, condenser 40 C & absorber 45 C supplying 1.4 kg/s of water plus lithium bromide solution to the generator. For a condenser size of 694 kW, determine: Heat provided by the generator & absorber capacity in kW

Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter47: High-pressure, Low-pressure, And Absorption Chilled-water Systems
Section: Chapter Questions
Problem 13RQ: The subcooling temperature in a condenser can be measured by taking the difference between the A....
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A manufacturer conducted an experiment for an
evaporator capacity 507 kW cooling and designed for
high COP of 1.8 when using lithium bromide plus
water in an absorption refrigeration system. The
evaporator operates 20 C, condenser 40 C &
absorber 45 C supplying 1.4 kg/s of water plus lithium
bromide solution to the generator. For a condenser
size of 694 kW,
determine:
Heat provided by the generator
&
absorber capacity in kW
Transcribed Image Text:A manufacturer conducted an experiment for an evaporator capacity 507 kW cooling and designed for high COP of 1.8 when using lithium bromide plus water in an absorption refrigeration system. The evaporator operates 20 C, condenser 40 C & absorber 45 C supplying 1.4 kg/s of water plus lithium bromide solution to the generator. For a condenser size of 694 kW, determine: Heat provided by the generator & absorber capacity in kW
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