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倾斜的赫勒肖池中浮力自催化反应前沿的数值模拟。

Numerical simulations of a buoyant autocatalytic reaction front in tilted Hele-Shaw cells.

作者信息

Jarrige N, Bou Malham I, Martin J, Rakotomalala N, Salin D, Talon L

机构信息

Lab FAST, Universite Pierre et Marie Curie-Paris 6-Universite Paris-Sud-CNRS, Campus Universitaire, Orsay F-91405, France.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Jun;81(6 Pt 2):066311. doi: 10.1103/PhysRevE.81.066311. Epub 2010 Jun 22.

Abstract

We present a numerical analysis of solutal buoyancy effects on the shape and the velocity of autocatalytic reaction fronts, propagating in thin tilted rectangular channels. We use two-dimensional (2D) lattice Bathnagar-Gross-Krook (BGK) numerical simulations of gap-averaged equations for the flow and the concentration, namely a Stokes-Darcy equation coupled with an advection-diffusion-reaction equation. We do observe stationary-shaped fronts, spanning the width of the cell and propagating along the cell axis. We show that the model accounts rather well for experiments we performed using an Iodate Arsenous Acid reaction propagating in tilted Hele-Shaw cells, hence validating our 2D modelization of a three-dimensional problem. This modelization is also able to account for results found for another chemical reaction (chlorite tetrathionate) in a horizontal cell. In particular, we show that the shape and the traveling velocity of such fronts are linked with an eikonal equation. Moreover, we show that the front velocity varies nonmonotonically with the tilt of the cell, and nonlinearly with the width of the cell.

摘要

我们对自催化反应前沿在倾斜薄矩形通道中传播时,溶质浮力对其形状和速度的影响进行了数值分析。我们使用二维(2D)格子玻尔兹曼-巴特纳格尔-格罗斯-克鲁克(BGK)数值模拟方法,对流动和浓度的间隙平均方程进行求解,即一个斯托克斯-达西方程与一个平流-扩散-反应方程相耦合。我们确实观察到了形状固定的前沿,其横跨单元宽度并沿单元轴传播。我们表明,该模型与我们使用碘酸盐-亚砷酸反应在倾斜的赫勒-肖细胞中进行的实验结果相当吻合,从而验证了我们对三维问题的二维建模。这种建模还能够解释在水平细胞中另一种化学反应(亚氯酸盐-连四硫酸盐)的实验结果。特别是,我们表明这种前沿的形状和传播速度与一个程函方程相关。此外,我们表明前沿速度随细胞倾斜度非单调变化,并且随细胞宽度非线性变化。

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