Thermal and compositional driven convection in thin reaction fronts

被引:0
|
作者
Quenta, Johann [1 ]
Vasquez, Desiderio A. [1 ,2 ]
机构
[1] Pontificia Univ Catolica Peru, Dept Ciencias, Secc Fis, Av Univ 1801, San Miguel, Lima, Peru
[2] Purdue Univ Ft Wayne, Dept Phys, Ft Wayne, IN 46805 USA
关键词
AUTOCATALYTIC REACTION FRONTS; CHEMICAL WAVES; SPIRAL WAVES; INSTABILITIES; ONSET;
D O I
10.1103/PhysRevE.109.035104
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Chemical reaction fronts separate regions of reacted and unreacted substances as they propagate in liquids. These fronts may induce density gradients due to different chemical compositions and temperatures across the front. In this paper, we investigate buoyancy-induced convection driven by both types of gradients. We consider a thin front approximation where the normal front velocity depends only on the front curvature. This model applies for small curvature fronts independent of the specific type of chemical reaction. For density changes due only to heat variations near the front, we find that convection can take place for either upward or downward propagating fronts if density gradients are above a threshold. Convection can set in even if the fluid with lower density is above the higher density fluid. Our model consists of Navier-Stokes equations coupled to the front propagation equation. We carry out a linear stability analysis to determine the parameters for the onset of convection. We study the nonlinear front propagation for liquids confined in narrow two-dimensional domains. Convection leads to fronts of steady shape, propagating with constant velocities.
引用
收藏
页数:11
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