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Analysis of thermodynamic losses in ground source heat pumps and their influence on overall system performance

机译:地源热泵热力学损失分析及其对整体系统性能的影响

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The present work aims at identifying the relative influence of GSHP subsystems (viz. ground source, earth heat exchangers, heat pump unit, pumping devices) on the overall efficiency and the limits to which technological improvements should be pushed (because, beyond these limits, only minor benefits may be achieved). To this end, an analysis of thermodynamic losses is conducted for a case study, followed by a sensitivity analysis on the heat pump unit thermal performance. Primary energy consumptions of nine configurations with different combinations of ideal and real subsystems are compared. The completely ideal system is used as the reference to normalize energy consumptions and obtain a dimensionless efficiency parameter. The results show that - when a proper design methodology is employed - the performance of the borehole heat exchangers slightly affects the overall efficiency. On the contrary, the thermal response of the ground and the thermal and hydraulic performances of the heat pump unit are key factors. Finally, a sensitivity analysis is conducted by increasing the heating and cooling efficiencies of the heat pump device.
机译:目前的工作旨在识别GSHP子系统(QZ。地面源,地球热交换器,热泵单元,泵送装置)对整体效率的相对影响以及应推动技术改进的整体效率(因为超出了这些限制,只有轻微的福利可以实现)。为此,对案例研究进行了对热力学损失的分析,然后对热泵单元热性能进行灵敏度分析。比较了九种配置的主要能量消耗,具有不同的理想和实际子系统的不同组合。完全理想的系统用作标准化能量消耗的参考,并获得无量纲效率参数。结果表明 - 当采用适当的设计方法时 - 钻孔热交换器的性能略微影响整体效率。相反,地面的热响应和热泵单元的热和液压性能是关键因素。最后,通过增加热泵装置的加热和冷却效率来进行灵敏度分析。

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