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Comparisons of Test Methods to Determine the Ground Thermal Conductivity for Geothermal Applications

机译:试验方法的比较确定地热应用的地热导率

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In-situ thermal response tests (TRTs) are widely used to determine the ground thermal conductivity surrounding a borehole heat exchanger (BHE) for geothermal applications. In the present work, three test methods, including the constant heating-flux method (CHFM), the constant heating-temperature method (CHTM), and the lithology analysis method (LAM) based on the laboratory thermal probe test (TPT), were performed to determine and compare the ground thermal conductivity surrounding two vertical boreholes located in Caofeidian. Test results showed that the average ground thermal conductivities using the CHTM-based and CHFM-based TRT were in a good agreement, with a relative deviation of 3.6percent. Compared with the TPT, however, the result by the CHTM-based and CHFM-based TRT was 20.3percent and 23.9percent higher, respectively. Further, the factors influencing the accuracy of test results were analyzed. It was found that the sampling disturbance by the core-drilling process was stronger in the sandy layer than in the clay and silt layer, which finally caused a relatively lower TPT result. In order to obtain more useful information on the ground thermal properties and to evaluate the effect of groundwater flow as possible, it is recommended that TRTs should be conducted based on the lithology analysis and the measurement of the natural ground temperature profile.
机译:原位热响应试验(TRTS)广泛用于确定用于地热应用的钻孔热交换器(BHE)周围的地热导率。在本作工作中,基于实验室热探针测试(TPT),三种测试方法,包括恒温 - 通量法(CHFM),恒温 - 温度法(CHFM),恒温 - 温度法(CHTM)和岩性分析方法(LAM)进行以确定和比较位于曹妃甸的两种垂直钻孔周围的地面导热率。测试结果表明,使用基于CHTM的和基于CHFM的TRT的平均接地热传导是良好的一致性,具有3.6%的相对偏差。然而,与TPT相比,基于CHTM的和基于CHFM的TRT的结果分别为20.3%,分别为23.9%。此外,分析了影响测试结果准确性的因素。结果发现,核心钻井过程中的采样扰动比粘土和淤泥层中的砂层更强,最终引起了相对较低的TPT结果。为了获得关于地热性质的更有用的信息并尽可能地评估地下水流动的效果,建议基于岩性分析和天然地温度的测量来进行TRT。

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