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New model to evaluate the effective thermal conductivity of three-phase soils

机译:评估三相土壤有效导热系数的新模型

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The aim of the present paper is to present a new model without empirical constants to evaluate the effective thermal conductivity of three-phase soils. In the model the soil is made of a quasi-spherical solid grain, and is surrounded by two phases, which can be air and water or air and ice. The effective thermal conductivity is obtained theoretically by the integration of the steady-state heat conduction equation under the thermal assumption of parallel heat fluxes. This new model allows to evaluate the effective thermal conductivity of soils with porosity (ratio between the volume of the voids and the total one) in the range between 0.0349 and 0.4734 at all degrees of saturation (ratio between the water volume and the void one) from dryness up to saturation. Comparisons with experimental data of unfrozen and frozen soils confirm that the model can predict the effective thermal conductivity with a fairly good agreement without using any empirical constant.
机译:本文的目的是提出一个没有经验常数的新模型来评估三相土壤的有效导热系数。在该模型中,土壤由准球形固体颗粒构成,并被两个相包围,可以是空气和水,也可以是空气和冰。理论上,有效热导率是在平行热通量的热假设下,通过稳态导热方程的积分获得的。通过这种新模型,可以评估在所有饱和度(水体积与孔隙率之间的比率)在0.0349和0.4734之间的范围内,孔隙率(孔隙体积和总孔隙之间的比率)的土壤的有效导热系数。从干燥到饱和。与未冻土和冻土的实验数据进行比较,证实了该模型可以在不使用任何经验常数的情况下,以相当好的一致性来预测有效导热系数。

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