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Heat and mass transfer in moist soil, part I. Formulation and testing

机译:湿土壤中的传热和传质,第一部分。配制和测试

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摘要

An unsteady two-dimensional model of heat and mass transfer through soil is implemented within a finite-volume-based numerical method. The model follows a phenomenological formulation for the transfer processes with temperature and matric potential (psi) as the dependent variables. The finite-volume method being inherently conservative, the mass imbalance problem reported in the literature when employing the psi-based formulation with other numerical methods is prevented. A partial elimination algorithm is applied within the iterative solution procedure to increase its implicitness and improve its robustness. The accuracy of the model is established by solving the following three test problems: temperature distribution in dry soil; moisture distribution in isothermal soil; and coupled heat and water vapor diffusion in soil. Results are presented in the form of temporal profiles of temperature and moisture content and compared against analytical values. Excellent agreement is obtained, with numerical profiles falling on top of theoretical values.
机译:在基于有限体积的数值方法中实现了通过土壤的传热和传质的非稳态二维模型。该模型遵循现象学公式,以温度和基质电势(psi)为因变量的转移过程。有限体积法本质上是保守的,当采用基于psi的公式和其他数值方法时,可以防止文献中报道的质量不平衡问题。在迭代求解过程中应用了部分消除算法,以增加其隐式性并提高其鲁棒性。通过解决以下三个测试问题来建立模型的准确性:干燥土壤中的温度分布;等温土壤中的水分分布;以及热和水蒸气在土壤中的扩散。结果以温度和水分含量的时间曲线形式呈现,并与分析值进行比较。获得了极好的一致性,其数值轮廓位于理论值之上。

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