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Fully coupled algorithm for heat and water transport - Estimation of non-linear parameters based on the experimental data

机译:水和热传输的全耦合算法-基于实验数据的非线性参数估计

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We solve the problem of coupled heat conduction and water transport in bentonite with water present in vapour and adsorbed form in a non-equilibrium state. The problem is governed by a system of two parabolic PDE and one ODE. Most of the coefficients are non-linear functions, defined either by underlying physical phenomena or empirically. We present a numerical scheme using FEM with linear base functions, implicit time discretization, and simple iterations for the non-linear terms. The model is verified against experiments (one 1D and one 3D) and we demonstrate the use of optimization algorithm for parameter calibration. Some of the parameters could be estimated successfully while others with limited confidence, which is explained by the particular character of the non-linear parameter dependence and resulting small sensitivity of the model on some parameters.
机译:我们解决了膨润土中热与水的耦合以及水以非平衡状态存在于蒸汽和吸附形式的耦合问题。该问题由两个抛物线PDE和一个ODE组成。大多数系数是非线性函数,由基础物理现象或凭经验定义。我们提出了一种使用有限元法的数值方案,该有限元法具有线性基函数,隐式时间离散化和非线性项的简单迭代。该模型针对实验进行了验证(一个1D和一个3D),并且我们演示了用于参数校准的优化算法。其中一些参数可以成功估计,而另一些参数的置信度有限,这可以通过非线性参数相关性的特殊特征以及模型对某些参数的较小敏感性来解释。

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