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Heat transfer modeling in saturated porous media and identification of the thermophysical properties of the soil by inverse problem

机译:饱和多孔介质中的传热模型和反问题识别土壤的热物理性质

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摘要

In this paper, the authors introduce a robust numerical strategy to estimate the temperature dependent heat capacity, thermal conductivity and porosity of a saturated porous medium, basing on the knowledge of heating curves at selected points in the medium. In order to solve the inverse problem, we use the least squares criterion (in which the sensitivity coefficients appear), leading to a system of ordinary differential equations (ODE). At the stage of numerical computations, we propose a new global approach, based on the method of lines and ordinary differential equations solvers, combined with a modified Newton method to deal with the nonlinearities presented in the system of coupled equations.
机译:在本文中,作者基于对介质中选定点的加热曲线的了解,引入了一种鲁棒的数值策略来估计与温度相关的热容量,导热系数和孔隙率,该方法取决于饱和介质的热曲线。为了解决反问题,我们使用最小二乘准则(其中出现了灵敏度系数),从而导致了一个常微分方程(ODE)系统。在数值计算阶段,我们基于线和常微分方程求解器的方法,结合改进的牛顿法,提出了一种新的全局方法,以处理耦合方程组中的非线性问题。

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