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首页> 外文期刊>Building Services Engineering Research & Technology >Ground source heat pumps: observations from United Kingdom ground thermal response tests
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Ground source heat pumps: observations from United Kingdom ground thermal response tests

机译:地源热泵:来自英国地热响应测试的观察

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摘要

The United Kingdom is experiencing a period of rapid growth in the use of ground source heat pump systems. Most installations in the United Kingdom use vertical 'borehole' heat-exchanger arrays, the design of which depends on four parameters: formation thermal conductivity, formation heat capacity, heat-exchanger resistance and heat-exchanger grout material heat capacity. Conventionally, two of these parameters (conductivity and resistance) are obtained from a thermal response test carried out on a trial heat exchanger at the site of interest by fitting thermal response data to classical line-source heat conduction theory. This test method gives no information on the heat capacities of the formation and grout material and requires an assumption about the former to enable the heat-exchanger resistance parameter to be extracted. In this work, a new method is developed for extracting all four parameters using a trust-region search algorithm in conjunction with a detailed numerical model of the test heat exchanger. Results give excellent agreement between the fitted-model predictions of heat-exchanger outlet water temperature and measured outlet water temperature for 13 test cases. A further advantage of the method developed here is that it can be used with data sets that contain disturbances and discontinuities. Practical applications: Most of the ground source heat pump installations in the United Kingdom use vertical 'borehole' heat-exchanger arrays. The design of these arrays requires information about the rock formation thermal conductivity and volume specific heat capacity and the borehole heat-exchanger thermal resistance and grout material volume specific heat capacity. These design parameters are usually obtained from a thermal response test carried out on a trial heat exchanger at the site of interest. In this work, thermal response test results from 13 UK sites are presented and a new method for obtaining the four design parameters is developed and proposed.
机译:英国正在经历地源热泵系统使用的快速增长时期。英国的大多数设施使用垂直的“井眼”热交换器阵列,其设计取决于四个参数:地层导热率,地层热容量,热交换器阻力和热交换器灌浆材料热容量。常规地,这些参数中的两个(电导率和电阻)是通过将热响应数据与经典的线源热传导理论拟合而在目标位置处的试验热交换器上进行的热响应测试获得的。该测试方法没有提供有关地层和灌浆材料热容量的信息,并且需要对前者进行假设,以提取出热交换器的阻力参数。在这项工作中,开发了一种使用信任区域搜索算法结合测试热交换器的详细数值模型来提取所有四个参数的新方法。结果使13个测试用例的热交换器出口水温的拟合模型预测与测得的出口水温之间具有极好的一致性。这里开发的方法的另一个优点是,它可以与包含干扰和不连续性的数据集一起使用。实际应用:英国的大多数地源热泵装置都使用垂直的“井眼”热交换器阵列。这些阵列的设计需要有关岩层导热率和体积比热容以及井眼热交换器热阻和灌浆材料体积比热容的信息。这些设计参数通常是从在目标站点的试验热交换器上进行的热响应测试获得的。在这项工作中,提出了来自英国13个站点的热响应测试结果,并提出并提出了一种获取四个设计参数的新方法。

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