Heat Current Method Based Modeling and Optimization of a Solar-Driven Absorption Chiller for Residential Houses

Qun Chen, Tian Zhao
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引用次数: 1

Abstract

The utilization of solar energy is attracting rapidly increasing researches due to its many advantages, and an important application is to satisfy the refrigeration demand of residents with the solar-assisted absorption chillers. However, the simple solar-assisted refrigeration system cannot always meet the cooling demand of residents due to the mismatch between solar power and the refrigeration load. Therefore, the thermal energy storage device is introduced into the solar-assisted system to increase the stability of the refrigeration system and reduce the waste of solar energy. In this contribution, a solar-assisted absorption chiller system together with the TES device is presented and optimized to minimize the operation cost of the system. The system is modeled using the newly proposed heat current method and its global constraints are constructed, which largely reduces the number of the constraints comparing to the traditional equation-oriented approach. Optimization results present that the optimized design of the system reduces the total operation cost effectively.
基于热流法的住宅太阳能吸收式制冷机建模与优化
太阳能的利用由于其诸多优点而引起了越来越多的研究,其中一个重要的应用就是利用太阳能辅助吸收式制冷机来满足居民的制冷需求。然而,由于太阳能功率与制冷负荷不匹配,简单的太阳能辅助制冷系统并不能满足居民的制冷需求。因此,在太阳能辅助制冷系统中引入蓄热装置,增加制冷系统的稳定性,减少太阳能的浪费。在这篇文章中,提出了一个太阳能辅助吸收式制冷机系统,并对其进行了优化,以最大限度地降低系统的运行成本。采用新提出的热流方法对系统进行建模,构建了系统的全局约束,与传统的面向方程的方法相比,大大减少了约束的数量。优化结果表明,系统的优化设计有效地降低了总运行成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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