2018IOP Conference Series Materials Science and EngineeringOpen access

Effect of Cooling Water on the Performance of Lithium Bromide–Water (LiBr–H2O) Absorption Based Heat Pump

S. Manu, T.K. Chandrashekar, C. Girisha

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Abstract

The need for extracting high heat from the industries has encouraged the development of Lithium Bromide-Water (LiBr-H 2 O) absorption based heat pump. This paper presents a simulation study of single-stage LiBr–H 2 O vapor absorption heat pump. The detailed thermodynamic analysis of the single-stage LiBr–H 2 O vapor absorption heat pump was carried out in this study. The validation of this model is performed by considering the values from the literature.The effect of cooling water on flow rates, COP (Coefficient of performance) and conductance are examined.

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What this paper is about

The need for extracting high heat from the industries has encouraged the development of Lithium Bromide-Water (LiBr-H 2 O) absorption based heat pump. This paper presents a simulation study of single-stage LiBr–H 2 O vapor absorption heat pump. The detailed thermodynamic analysis of the single-stage LiBr–H 2 O vapor absorption heat pump was carried out in this study. The validation of this model is performed by considering the values from the literature.The effect of cooling water on flow rates, COP (Coefficient of performance) and conductance are examined.

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Available abstract

The need for extracting high heat from the industries has encouraged the development of Lithium Bromide-Water (LiBr-H 2 O) absorption based heat pump. This paper presents a simulation study of single-stage LiBr–H 2 O vapor absorption heat pump. The detailed thermodynamic analysis of the single-stage LiBr–H 2 O vapor absorption heat pump was carried out in this study. The validation of this model is performed by considering the values from the literature.The effect of cooling water on flow rates, COP (Coefficient of performance) and conductance are examined.

Key concepts: Lithium bromide, Absorption heat pump, Coefficient of performance, Absorption refrigerator, Thermodynamics, Heat pump, Water vapor, Water cooling

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