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Performance analysis and parametric study of thermal energy storage in an aquifer coupled with a heat pump and solar collectors, for a residential complex in Tehran, Iran

机译:伊朗德黑兰某住宅小区含水层中热能存储与热泵和太阳能收集器结合的性能分析和参数研究

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摘要

Aquifers are underground porous formations containing water. Confined aquifers are the formations surrounded by two impermeable layers, called cap rocks and bed rocks. These aquifers are suitable for seasonal thermal energy storage. In the present study, a confined aquifer was considered to meet the cooling and heating energy needs of a residential complex located in Tehran, Iran. Three different alternatives were analyzed in this aquifer thermal energy storage (ATES), including: using ATES for cooling alone, for cooling and heating, as a heat pump, and for heating alone, employing flat plate solar energy collectors. A numerical simulation, based on the finite difference method, was carried out for velocity and temperature distributions as well as the heat transfer in the aquifer. The thermal energy recovery factor and the annual coefficient of performance of the system were determined under various schemes of operation, revealing that the combination of the ATES with the heat pump, to meet both cooling and heating needs of the complex, is the best. The study was repeated for different aquifer properties.
机译:含水层是含水的地下多孔地层。承压含水层是被两个不渗透层包围的地层,分别称为盖层岩层和基岩层。这些含水层适用于季节性热能存储。在本研究中,考虑使用密闭含水层来满足伊朗德黑兰某住宅小区的制冷和供暖能源需求。在此含水层热能存储(ATES)中分析了三种不同的替代方案,包括:使用ATES单独冷却,冷却和加热,作为热泵,以及单独加热,使用平板太阳能收集器。基于有限差分法,对含水层中的速度和温度分布以及传热进行了数值模拟。在各种运行方案下确定了系统的热能回收系数和年度性能系数,这表明将ATES与热泵组合使用以满足系统的制冷和制热需求是最好的。针对不同的含水层特性重复了该研究。

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