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Estimation of Operating Parameters of a Water-LiBr Vapor Absorption Refrigeration System Through inverse Analysis

机译:通过逆分析估计水-溴化锂蒸气吸收式制冷系统的运行参数

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摘要

In this paper, an inverse problem is solved for estimating parameters of a steam-driven water-lithium bromide (LiBr) vapor absorption refrigeration system (VARS) using a differential evolution (DE)-based inverse approach. Initially, a forward model simulates the steady-state performance of the VARS at various operating temperatures and evaporator cooling loads (CLs). A DE-based inverse analysis is then performed to estimate the operating parameters taking VARS coefficient of performance (COP), CL, total irreversibility, and exergy efficiency as objective functions (one objective function at a time). DE-based inverse technique estimates the parameters within a very short period of elapsed time. Over 50 and 100 numbers of generations are sufficient for retrieval of COP and exergy efficiency, respectively, while it requires 150 generations for total irreversibility and CL. The study reveals that multiple combinations of parameters within a given range satisfy a particular objective function which serves as design guidelines in selecting appropriate operating parameters.
机译:在本文中,使用基于差分演化(DE)的逆方法解决了估计蒸汽驱动水溴化锂(LiBr)蒸气吸收制冷系统(VARS)参数的逆问题。最初,一个正向模型模拟VARS在各种工作温度和蒸发器冷却负荷(CLs)下的稳态性能。然后进行基于DE的逆分析,以VARS性能系数(COP),CL,总不可逆性和火用效率作为目标函数(一次一个目标函数)来估算运行参数。基于DE的逆向技术会在很短的时间范围内估算参数。超过50和100世代的数量分别足以恢复COP和火用效率,而总不可逆性和CL则需要150世代。研究表明,给定范围内的参数的多种组合满足特定的目标函数,该目标函数可作为选择适当操作参数的设计准则。

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