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Thermodynamic and thermoeconomic analysis of combined geothermal space heating and thermal storage using phase change materials

机译:相变材料对地热空间供热与储热相结合的热力学和热经济学分析

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The present work discusses the utilization of phase change materials for energy storage in geothermal space heating systems. Thermodynamics and thermoeconomics of the combined heating and thermal storing system were studied to show the scope of energy storage and cost savings. A computational model of the combined space heating and thermal storage system was developed and used to perform thermodynamic studies of the heat storage process and heating system efficiency at different times and ambient temperatures. The basis for these studies is daily variations in heating demand that is higher during the night than during the day. The results show the scope of the utilization of phase change material for low ambient temperature conditions. Under proper conditions a sufficient amount of exergy is stored during the charging period at a low ambient temperature to fulfill the daytime heat load requirement. Under these conditions the cost flow rate of exergy storage is found to be lower than the radiator heating cost flow rate. Thus, the use of exergy storage at low ambient temperatures for heating at higher ambient temperatures makes a significant contribution to cost savings.
机译:本工作讨论了利用相变材料在地热空间供热系统中存储能量的方法。研究了组合式储热系统的热力学和热经济学,以显示储能范围和节省成本。开发了组合式空间供热和储热系统的计算模型,并将其用于在不同时间和环境温度下进行储热过程和供热系统效率的热力学研究。这些研究的基础是夜间供热需求的每日变化,其夜间变化要高于白天。结果表明在低环境温度条件下使用相变材料的范围。在适当的条件下,充电期间在较低的环境温度下会存储足够的火用能量,以满足白天的热负荷要求。在这些条件下,火用存储的成本流率低于散热器采暖成本流率。因此,在较低的环境温度下使用火用储能器在较高的环境温度下进行加热对节省成本做出了重大贡献。

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