Upscaling of a reaction-diffusion-convection problem with exploding non-linear drift

IF 0.9 4区 数学 Q3 MATHEMATICS, APPLIED
Vishnu Raveendran, E. Cirillo, A. Muntean
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引用次数: 2

Abstract

We study a reaction-diffusion-convection problem with non-linear drift posed in a domain with periodically arranged obstacles. The non-linearity in the drift is linked to the hydrodynamic limit of a totally asymmetric simple exclusion process (TASEP) governing a population of interacting particles crossing a domain with obstacle. Because of the imposed large drift scaling, this non-linearity is expected to explode in the limit of a vanishing scaling parameter. As main working techniques, we employ two-scale formal homogenization asymptotics with drift to derive the corresponding upscaled model equations as well as the structure of the effective transport tensors. Finally, we use Schauder’s fixed point theorem as well as monotonicity arguments to study the weak solvability of the upscaled model posed in an unbounded domain. This study wants to contribute with theoretical understanding needed when designing thin composite materials that are resistant to high velocity impacts.
具有爆炸非线性漂移的反应-扩散-对流问题的放大
我们研究了具有非线性漂移的反应-扩散-对流问题,该问题是在具有周期性排列障碍物的区域中提出的。漂移中的非线性与完全不对称简单排除过程(TASEP)的流体动力学极限有关,该过程控制着穿过有障碍物的区域的相互作用粒子群。由于所施加的大漂移标度,预计这种非线性将在消失标度参数的极限下爆发。作为主要的工作技术,我们使用带漂移的两尺度形式化均匀化渐近性来导出相应的放大模型方程以及有效传输张量的结构。最后,我们使用Schauder不动点定理和单调性论点来研究在无界域中提出的放大模型的弱可解性。这项研究希望在设计耐高速冲击的薄复合材料时,有助于获得所需的理论理解。
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来源期刊
Quarterly of Applied Mathematics
Quarterly of Applied Mathematics 数学-应用数学
CiteScore
1.90
自引率
12.50%
发文量
31
审稿时长
>12 weeks
期刊介绍: The Quarterly of Applied Mathematics contains original papers in applied mathematics which have a close connection with applications. An author index appears in the last issue of each volume. This journal, published quarterly by Brown University with articles electronically published individually before appearing in an issue, is distributed by the American Mathematical Society (AMS). In order to take advantage of some features offered for this journal, users will occasionally be linked to pages on the AMS website.
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