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Analysis of Short Time Period of Operation of Horizontal Ground Heat Exchangers

机译:水平地面换热器短时间运行分析

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Ground source heat pump (GSHP) systems have been proven to have higher efficiency compared to conventional air source heat pump systems for space heating and cooling applications. While vertical ground heat exchangers (GHE) are favorable in GSHP installation, this type of configuration requires higher capital costs as opposed to horizontal configuration. Numerical simulation has been used to accurately predict the thermal performance of GHE. In this paper, numerical analysis of thermal performance for slinky horizontal GHE loops in different orientations and operation modes is discussed. It was found that the loop orientation is not so important due to the little effect it has on thermal performance. While the mean heat exchange rate of copper loop increases 48% compared to HDPE loop, the analysis supports the common claim that heat exchange rate is predominantly limited by the thermal conductivity of the ground. With the same amount of circulation work, the mean heat exchange rate increases by 83%–162% when operated in parallel loops operations. The performance in these operations can be further optimized to 10%–14% increase when spacing between adjacent loops was provided. The spacing helps to minimize interference of heat flow that would penalize the overall thermal performance.
机译:与用于空间加热和冷却应用的传统空气源热泵系统相比,地源热泵(GSHP)系统已被证明具有更高的效率。虽然GSHP安装有利于垂直地面热交换器(GHE),但与水平配置相比,这种类型的配置需要较高的投资成本。数值模拟已用于准确预测GHE的热性能。本文讨论了不同方向和操作模式下的紧身水平GHE回路热性能的数值分析。已经发现,由于其对热性能的影响很小,因此回路取向不是那么重要。尽管与HDPE回路相比,铜回路的平均热交换率增加了48%,但该分析支持一个普遍的主张,即热交换率主要受地面的导热率限制。在相同的循环功下,以并联回路运行时,平均热交换率增加83%–162%。当提供相邻回路之间的间距时,可以将这些操作的性能进一步优化为提高10%至14%。间距有助于最大程度地减少热流干扰,从而降低整体热性能。

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