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Study on the characteristics of charging/discharging processes in three-phase energy storage coupling in solar air conditioning system

机译:太阳能空调系统三相储能耦合器充放电过程特性的研究

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摘要

A new combination system of "three-phase energy storage" and solar absorption refrigeration has been developed in this paper. The operation process of LiBr-H2O three-phase energy storage system is described in detail. Thermodynamic analysis models of charging/discharging processes based on the absorption principle are established in order to understand the dynamic characteristics of three-phase energy storage and release processes. The dynamic simulations of charging/discharging processes are carried out by using MATLAB. The influences of operation parameters on the characteristic parameters of three-phase charging/discharging are analyzed, and the performance evaluation indexes of three-phase energy storage system are obtained. The simulation results showed that the lower initial concentration of LiBr-H2O solution, the smaller mass flow rate of LiBr-H2O sprayed on the heat exchanger in the energy storage tank and the higher heat conductance of the heat exchanger (KA) result in the higher energy storage efficiency and energy storage density. The smaller mass flow rates of LiBr-H2O and the cooling water can make the more stable discharging process with longer cooling time. The research results can provide theoretical guidance for further improving and optimizing the operation performance of three-phase energy storage system coupling in solar air conditioning. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文开发了一种新型的“三相储能”与太阳能吸收制冷相结合的系统。详细介绍了LiBr-H2O三相储能系统的运行过程。建立了基于吸收原理的充放电过程热力学分析模型,以了解三相能量存储和释放过程的动态特性。使用MATLAB对充电/放电过程进行动态仿真。分析了运行参数对三相充放电特性参数的影响,得出了三相储能系统的性能评价指标。仿真结果表明,LiBr-H2O溶液的初始浓度越低,在储能罐中的热交换器上喷射的LiBr-H2O的质量流量越小,而热交换器(KA)的热导率越高,结果越高。储能效率和储能密度。 LiBr-H2O和冷却水的质量流量越小,放电过程越稳定,冷却时间越长。研究结果可为进一步改善和优化太阳能空调三相储能系统的运行性能提供理论指导。 (C)2019 Elsevier B.V.保留所有权利。

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