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Experiments Using Capillary Mat as Ground Heat Exchanger for Ground Source Heat Pump Heating Application

机译:毛毡作为地源热泵供地热源换热器的实验

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The cooling and heating of spaces are among the largest sources for household’s energy demand. Ground Source Heat Pump (GSHP) is a promising technology to reduce the energy for cooling and heating purposes. However, the major obstacle hindering the utilization of this technology is the high initial cost, especially for the installation of ground coupled heat exchanger. The horizontal closed-loop system offers lower installation cost, as it requires no vertical borehole construction. Instead, the heat exchangers can be installed in shallow trenches that may be excavated, by small excavator or even by hu man labor. This paper presents the comparison of two different heat exc hangers, namely, the capillary mat and the widely used slinky pipe. Both heat exchangers are connected to a heat pump, where continuous heating tests were carried out for 165 hours (~7 days) for each configuration. The purpose of this research is to show the performance of capillary mat in comparison to slinky pipe. Despite during the entire test for capillary mat required 6% higher electricity consumption, compared to slinky heat exchanger, the results still suggest the potential use of capillary mat as alternative to slinky heat exchanger. Additionally, the results also highlight the high hydraulic resistance of installed capillary mat heat exchangers may become the major disadvantage of the capillary mat.
机译:空间的制冷和供暖是满足家庭能源需求的最大来源之一。地源热泵(GSHP)是一种有前途的技术,可以减少用于制冷和制热的能源。但是,阻碍该技术应用的主要障碍是高昂的初始成本,尤其是对于地面耦合热交换器的安装。水平闭环系统不需要垂直井眼结构,因此安装成本较低。取而代之的是,可以将热交换器安装在可以由小型挖掘机甚至人力进行挖掘的浅沟槽中。本文介绍了两种不同的排热支架,即毛细管垫和广泛使用的紧身管的比较。两个热交换器都连接到一个热泵上,在该热泵中,针对每种配置进行了165小时(〜7天)的连续加热测试。这项研究的目的是要显示毛细管垫与硬管相比的性能。尽管在整个测试过程中毛细毡的耗电量比紧身型热交换器高6%,但结果仍然表明,毛细毡可替代紧身型热交换器的潜力。此外,结果还突出显示已安装的毛细管垫热交换器的高水力阻力可能成为毛细管垫的主要缺点。

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