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首页> 外文期刊>Journal of Hydrology >Shallow heat injection and storage experiment: Heat transport simulation and sensitivity analysis
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Shallow heat injection and storage experiment: Heat transport simulation and sensitivity analysis

机译:浅层热注入和存储实验:热传输模拟和灵敏度分析

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摘要

Interest in heat transport in porous media has increased because of its many applications such use as tracer or in geotechnical engineering solutions. Understanding of the physical processes and parameters determining heat transport is therefore important. In this paper, heat transport is studied during a shallow heat injection and storage field test. The test is simulated using SEAWAT. Sensitivity analyses and collinear diagnostics are used to derive which parameters can be derived from the test and how reliable these values are. Heat transport during the test is compared with heat transport in the surficial zone at the same field site to compare parameter values. The most sensitive parameter is the thermal conductivity of the solid followed by the porosity, heat capacity of the solid and the longitudinal dispersivity. This indicates the predominance of conductive transport during the storage phase over the convective transport during the injection phase. Whereas heat transport in the surficial zone is insensitive to the longitudinal dispersivity, this parameter must be included to simulate the field test. This indicates that dispersivity cannot be ignored simulating convective heat transport in aquifers.
机译:由于其在示踪剂或岩土工程解决方案中的许多应用,对多孔介质中传热的兴趣已经增加。因此,了解确定热传递的物理过程和参数很重要。在本文中,研究了浅热注入和储藏现场测试期间的热传递。该测试是使用SEAWAT模拟的。灵敏度分析和共线诊断用于得出可以从测试中得出哪些参数以及这些值的可靠性。将测试期间的热传输与同一现场站点表层区域的热传输进行比较,以比较参数值。最敏感的参数是固体的热导率,然后是孔隙率,固体的热容量和纵向分散性。这表明在存储阶段的导电传输比在注入阶段的对流传输占优势。尽管表层区域中的热传输对纵向分散性不敏感,但必须包含此参数以模拟现场测试。这表明在模拟含水层中的对流传热过程中不能忽略分散性。

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