MIXED VOLUME ELEMENT-CHARACTERISTIC MIXED VOLUME ELEMENT OF NUMERICAL SIMULATION OF NUCLEAR CONTAMINATION TREATMENT AND ITS CONVERGENCE ANALYSIS

Yirang Yuan, Changfeng Li, Yunxin Liu, Tongjun Sun, Qing Yang
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Abstract

We consider a nonlinear system with boundary-initial value conditions of convection-diffusion partial differential equations describing nuclear waste disposal contamination in porous media. The flow pressure is determined by an elliptic equation, the concentrations of brine and radionuclide are formulated by convection-diffusion equations, and the transport of temperature is defined by a heat equation. The transport pressure appears in the concentration equations and heat equation accompanying with Darcy velocity, and controls their processes. The flow equation is solved by the conservative method of mixed volume element and the accuracy of Darcy velocity is improved one order. The method of characteristic mixed volume element is applied to solve the concentrations and the heat, where the diffusion is discretized by a mixed volume element method and the convection is treated by the method of characteristics. The characteristics can confirm high computation stability at sharp fronts and it can avoid numerical dispersion and nonphysical oscillation. The scheme can adopt a large step while it has smaller time-truncation error and higher order of accuracy. The mixed volume element method has law of conservation on every element to treat the diffusion and it can obtain numerical solution is of the concentration and adjoint vectors. Using the theory and technique of priori estimate of differential equations, we derive an optimal second order estimate in l2 norm. Numerical examples are given to show the effectiveness and practicability and the method is testified as a powerful tool to solve such an international famous problem.
混合体积元——核污染处理数值模拟的特征混合体积元及其收敛性分析
考虑了多孔介质中核废料处理污染的对流扩散偏微分方程的边界初值条件的非线性系统。流动压力由椭圆方程确定,卤水和放射性核素的浓度由对流扩散方程表示,温度的传递由热方程定义。输运压力伴随着达西速度出现在浓度方程和热量方程中,并控制着它们的过程。采用混合体积元保守法求解流动方程,使达西速度的精度提高了一个数量级。采用特征混合体积元法求解浓度和热量,其中扩散用混合体积元法离散,对流用特征元法处理。该特性保证了在尖锐锋面处较高的计算稳定性,避免了数值色散和非物理振荡。该方案可以采用大步进,同时具有较小的时间截断误差和较高的精度阶数。混合体积元法在处理扩散问题时对每个单元都有守恒定律,可以得到浓度和伴随向量的数值解。利用微分方程先验估计的理论和技术,导出了二阶最优估计。算例表明了该方法的有效性和实用性,是解决这一国际著名问题的有力工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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