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首页> 外文期刊>Hydrology >Field Analysis of Stepwise Effective Thermal Conductivity along a Borehole Heat Exchanger under Artificial Conditions of Groundwater Flow
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Field Analysis of Stepwise Effective Thermal Conductivity along a Borehole Heat Exchanger under Artificial Conditions of Groundwater Flow

机译:地下水流人工条件下沿井孔换热器逐步有效导热系数的现场分析

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摘要

Heat advection caused by groundwater flow can potentially improve the performance of a borehole heat exchanger. However, the required flow velocity is not achieved under most natural conditions. This study focuses on artificial groundwater flow generated by pumping and investigates the associated effect in a lowland area near the Toyohira River alluvial fan, Sapporo, Japan. Thermal response test results are compared under natural and artificial groundwater flow conditions. A pumping well is constructed one meter from the borehole. Temperature profiles are measured in the U-tube during testing, using a pair of optic fiber distributed temperature sensors. The effective thermal conductivity is calculated from the profiles obtained in each 10-m sub-layer; this thermal conductivity is termed the stepwise thermal conductivity. Additionally, the upward flow velocity in the pumping well is measured to estimate the mean groundwater flow velocity at the borehole. The results show that effective thermal conductivity increases at depths less than 50 m, where the pumping creates mean velocities greater than 0.1 m d ?1 in each sub-layer (1.5 md ?1 on average). Thus, a borehole length of 50 m is more reasonable at the test site for its efficiency in a ground source heat pump system coupled with the pumping well than that used.
机译:由地下水流引起的热对流可以潜在地改善井眼热交换器的性能。但是,在大多数自然条件下都无法达到所需的流速。这项研究的重点是通过抽水产生的人工地下水流,并研究了日本札幌丰平河冲积扇附近低地的相关影响。比较了自然和人工地下水流动条件下的热响应测试结果。距井眼一米处建有抽水井。在测试过程中,使用一对光纤分布式温度传感器在U型管中测量温度曲线。有效导热系数是根据在每个10 m子层中获得的分布图计算得出的;该热导率称为逐步热导率。另外,测量抽水井中的向上流速以估计井眼处的平均地下水流速。结果表明,有效热导率在小于50 m的深度处增加,其中抽运在每个子层中产生的平均速度大于0.1 m d?1(平均1.5 md?1)。因此,在地面上50 m的井眼长度在与泵井耦合的地源热泵系统中的效率要比所用井眼的长度更合理。

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