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Sulfate attack in sewer pipes: Derivation of a concrete corrosion model via two-scale convergence

机译:下水道中的硫酸盐侵蚀:通过两步收敛推导混凝土腐蚀模型

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摘要

We explore the homogenization limit and rigorously derive upscaled equations for a microscopic reaction-diffusion system modeling sulfate corrosion in sewer pipes made of concrete. The system, defined in a periodically-perforated domain, is semi-linear, partially dissipative and weakly coupled via a non-linear ordinary differential equation posed on the solid-water interface at the pore level. First, we show the well-posedness of the microscopic model. We then apply homogenization techniques based on two-scale convergence for a uniformly periodic domain and derive upscaled equations together with explicit formulas for the effective diffusion coefficients and reaction constants. We use a boundary unfolding method to pass to the homogenization limit in the non-linear ordinary differential equation. Finally, we give the strong formulation of the upscaled system. (C) 2012 Elsevier Ltd. All rights reserved.
机译:我们探索了均质化极限,并严格导出了微观反应扩散系统的放大方程,该系统模拟了混凝土制污水管中的硫酸盐腐蚀。该系统定义在周期性穿孔的区域内,是半线性的,部分耗散的,并且通过在孔隙水平处置于固-水界面上的非线性常微分方程弱耦合。首先,我们展示了微观模型的适定性。然后,我们针对均匀周期域应用基于两尺度收敛的均化技术,并推导了升华方程式以及有效扩散系数和反应常数的明确公式。我们使用边界展开方法来传递非线性常微分方程中的均化极限。最后,我们给出了升级系统的强有力的表述。 (C)2012 Elsevier Ltd.保留所有权利。

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