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Coefficient of Performance Stabilisation in Ground Source Heat Pump Systems

机译:地源性能稳定系数 热泵系统

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摘要

The number of installations with ground source heat pumps is steadily increasing. As they involve high investment costs, they require deliberate action and analysis. Research on the influence of design, materials and operating parameters on their coefficient of performance becomes of great importance. In this article the authors propose a new ground source heat pump system with horizontal ground heat exchanger and subsurface irrigation system. In order to examine the possibility of applying the system, the influence of soil moisture content on the heat pump coefficient of performance was investigated in this research. Conducting research on the real object is extremely expensive, so it was decided to conduct simulation studies using the finite element method. The presented results of research confirm that the soil moisture content has the greatest impact on the heat pump system coefficient of performance. The developed ground source heat pump system with subsurface irrigation system allow to reduce the length of ground heat exchanger loop.
机译:带有地源热泵的装置数量正在稳步增加。由于它们涉及高昂的投资成本,因此需要深思熟虑的行动和分析。研究设计,材料和工作参数对其性能系数的影响变得非常重要。在本文中,作者提出了一种具有水平地面热交换器和地下灌溉系统的新型地面源热泵系统。为了检验该系统的应用可能性,研究了土壤水分含量对热泵性能系数的影响。对真实物体进行研究非常昂贵,因此决定使用有限元方法进行模拟研究。研究结果表明,土壤含水量对热泵系统的性能系数影响最大。带有地下灌溉系统的发达的地源热泵系统可以减少地热交换回路的长度。

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