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How Reliable Are Standard Thermal Response Tests? An Assessment Based on Long-Term Thermal Response Tests Under Different Operational Conditions

机译:标准热响应测试有多可靠?基于不同操作条件下的长期热响应试验的评估

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摘要

In this contribution, we analyze the results of a number of thermal response test (TRT) experiments performed during several years at the same location at our university campus in Valencia (Spain), a permeable saturated soil area with possible groundwater flow conditions. A combination of different heat injection rates, TRT operation times of up to 32 days, and various methods for parameter estimation of ground thermal properties have been applied to study their influence on the result and accuracy of TRTs. Our main objective has been to experimentally quantify the influence of groundwater flow heat advection using moving infinite and finite line-source theories, as well as to analyze the influence of factors such as test duration, sensor accuracy, and external thermal influences. We have shown that the traditionally used infinite and finite line-source models, as well as the moving line-source models, can accurately represent experimental temperature evolution, but that there are many caveats regarding the significance parameters extracted and its reproducibility and stability. These features can be improved if data from the first test days are disregarded for the analysis, obtaining a much faster convergence to the definitive soil parameter estimates, including the effective Péclet number that represents groundwater flow in our particular case.
机译:在这方面的贡献,我们分析了一些在几年在同一地点,在我们的大学校园在瓦伦西亚(西班牙)进行热响应试验(TRT)的实验中,可能出现的地下水流条件下渗透饱和土面积的结果。不同的热喷射率,最多32天的TRT的操作时间,以及用于接地的热特性的参数估算的各种方法的组合已被应用以研究它们对结果和TRTS的精度的影响。我们的主要目标是通过实验量化地下水流热平流的使用移动无限和有限线源理论的影响,以及分析的因素,如试验持续时间,传感器的精度,和外部热影响的影响。我们已经表明,传统使用的无限远和有限线源模型,以及作为移动线源模型,可以准确地表示实验温度演变,但有关于提取的意义的参数和其重现性和稳定性多警告。如果从第一天的测试数据被忽视的分析,获得更快的衔接,明确土壤参数估计,包括代表地下水在我们的特定情况下流动的有效Peclet数这些功能可以改善。

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