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Extended temperature-entropy (T-s) diagrams for aqueous lithium bromide absorption refrigeration cycles

机译:含水溴化锂吸收式制冷循环的扩展温度熵(T-s)图

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Temperature-entropy (T-s) diagrams have the unique capability of being able to quantify processes in terms of both the first and second laws of thermodynamics. Although use of generalised T-s diagrams has been made to indicate or represent generalised absorption cycles, with the exception for NH{sub}3/water systems, these diagrams have not been specifically tailored to scale to quantify LiBr/water systems. The main barrier for this is that the diagram needs to represent the necessary properties of both the refrigerant (water) and of the solution (LiBr/water), This paper describes the use of the T-s diagram of water extended with additional curves to represent real and ideal LiBr/water absorption cycles. An explanation is provided on several methods available, including details of the thermodynamic justification of the method that was used, to construct the extended diagrams. Finally, the extended T-s diagram is provided with the representation of a real single-effect LiBr/water absorption refrigeration cycle. This should prove to be a valuable tool for design and research engineers to study and optimise LiBr/water chillers.
机译:温度熵(T-s)图具有独特的能力,能够根据热力学第一定律和第二定律对过程进行量化。尽管已使用广义T-s图来指示或表示广义吸收循环,但NH {sub} 3 /水系统除外,但这些图尚未专门设计用于缩放以量化LiBr /水系统。这样做的主要障碍是该图需要表示制冷剂(水)和溶液(LiBr /水)的必要特性。本文描述了使用水的Ts图扩展并附加曲线来表示实际值的方法。和理想的溴化锂/水吸收循环。提供了几种可用方法的解释,包括构造扩展图所用方法的热力学依据的详细信息。最后,扩展的T-s图提供了真正的单效LiBr /吸水制冷循环的表示。对于设计和研究工程师来说,这应该是一个有价值的工具,用于研究和优化LiBr /冷水机组。

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