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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >A new generalized soil thermal conductivity model for sand-kaolin clay mixtures using thermo-time domain reflectometry probe test
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A new generalized soil thermal conductivity model for sand-kaolin clay mixtures using thermo-time domain reflectometry probe test

机译:使用热 - 时域反射探针试验的砂高岭土混合物新型普通土火导型模型

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摘要

As the demand of exploitation and utilization of geothermal energy increases, more geothermal-related earth structures occur recently. The design of the structures depends upon an accurate prediction of soil thermal conductivity. The existing soil thermal conductivity models were mostly developed by empirical fits to datasets of soil thermal conductivity measurements. Due to the gaps in measured thermal conductivities between any two tested natural soils, the models may not provide accurate prediction for other soils, and the predicted thermal conductivity might not be continuous over the entire range of soil type. In this research, a generalized soil thermal conductivity model was proposed based on a series of laboratory experiments on sand, kaolin clay and sand-kaolin clay mixtures using a newly designed thermo-time domain reflectometry probe. The model was then validated with respect to k(dry)-n (thermal conductivity of dry soils and porosity) and k(r)-S-r (normalized thermal conductivity and degree of saturation) relationships by comparing with previous experimental studies. The predicted thermal conductivities were found to be in a good agreement with the experimental data collected from both this study and the other literatures with at least 85% confidence interval. It is concluded that the proposed model accounts for the effects of both environmental factors (i.e., moisture content and dry density) and compositional factors (i.e., quartz content and soil type) on soil thermal conductivity, and it has a great potential in predicting soil thermal conductivity more accurately for geothermal applications.
机译:随着地热能利用和利用的需求,最近发生了更多的地热相关地球结构。结构的设计取决于对土壤导热率的精确预测。现有的土壤导热率模型主要由经验拟合对土壤导热率测量的数据集进行开发。由于在任何两个测试的天然土壤之间测量的热导体中的间隙,模型可能无法为其他土壤提供精确的预测,并且预测的导热率可能在整个土壤类型范围内不连续。在该研究中,基于使用新设计的热 - 时域反射测定管探针的砂,高岭土和砂对高岭土混合物的一系列实验室实验,提出了一种广义的土壤导热模型。然后通过与先前的实验研究相比,相对于K(干燥的)-N(干燥土壤和孔隙率的导热率)和K(R)-S-R(归一化热导率和饱和度)关系进行验证。预测的热导率被发现与从本研究中收集的实验数据和至少85%置信区间的实验数据吻合良好。得出结论是,拟议的模型占环境因素(即水分含量和干密度)和组成因子(即石英含量和土壤类型)对土壤导热系数的影响,并且在预测土壤中具有巨大潜力热导率更准确地用于地热应用。

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