SNS COLLEGE OF ENGINEERING Coimbatore-107 Subject: Thermal Engineering

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A presentation on “Vapour absorption refrigeration system ”
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SNS COLLEGE OF ENGINEERING Coimbatore-107 Subject: Thermal Engineering Simple Vapor-Absorption Refrigeration System

COP for Ideal Vapor Absorption Refrigeration System

Practical Vapor – Absorption Refrigeration System  

Practical vapor – absorption refrigeration system Generator: The strong solution of ammonia refrigerant and water absorbent are heated by the external source of heat such as steam or hot water. It can also be heated by other sources like natural gas, electric heater, waste exhaust heat etc.

Practical vapor absorption refrigeration system Generator - Due to heating the refrigerant ammonia gets vaporized and it leaves the generator. However, since water has strong affinity for ammonia and its vaporization point is quite low some water particles also get carried away with ammonia refrigerant, so it is important to pass this refrigerant through analyzer.

Vapour Absorption Refrigeration Systems Based On Water-Lithium Bromide Pair

VARS based on H2O – LiBr Pair Vapour absorption refrigeration systems using water-lithium bromide pair are extensively used in large capacity air conditioning systems. In these systems water is used as refrigerant and a solution of lithium bromide in water is used as absorbent. Since water is used as refrigerant, using these systems it is not possible to provide refrigeration at sub-zero temperatures. Hence it is used only in applications requiring refrigeration at temperatures above 0oC.

VARS based on H2O – LiBr Pair Hence these systems are used for air conditioning applications. The analysis of this system is relatively easy as the vapour generated in the generator is almost pure refrigerant (water), unlike ammonia-water systems where both ammonia and water vapour are generated in the generator.

Duhring plot

Sample Problem in Simple VARS 9. The operating temperatures of a single stage vapour absorption refrigeration system are: generator: 90oC; condenser and absorber: 40oC; evaporator: 0oC. The system has a refrigeration capacity of 100 kW and the heat input to the system is 160 kW. The solution pump work is negligible. a) Find the COP of the system and the total heat rejection rate from the system. b) An inventor claims that by improving the design of all the components of the system he could reduce the heat input to the system to 80 kW while keeping the refrigeration capacity and operating temperatures same as before. Examine the validity of the claim.

Sample Problem in Simple VARS Solution: