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Interaction between buoyancy and diffusion-driven instabilities of propagating autocatalytic reaction fronts. I. Linear stability analysis.

机译:浮力与传播驱动的自催化反应前沿的扩散驱动的不稳定性之间的相互作用。一,线性稳定性分析。

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摘要

The interaction between buoyancy-driven and diffusion-driven instabilities that can develop along a propagating reaction front is discussed for a system based on an autocatalytic reaction. Twelve different cases are possible depending on whether the front is ascending or descending in the gravity field, whether the reactant is heavier or lighter than the products, and whether the reactant diffuses faster, slower, or at the same rate as the product. A linear stability analysis (LSA) is undertaken, in which dispersion curves (plots of the growth rate sigma against wave number k) are derived for representative cases as well as an asymptotic analysis for small wave numbers. The results from the LSA indicate that, when the initial reactant is denser than the reaction products, upward propagating fronts remain unstable with the diffusion-driven instability enhancing this instability. Buoyantly stable downward propagating fronts become unstable when the system is also diffusionally unstable. When the initial reactant is lighter than the reaction products, any diffusionally unstable upward propagating front is stabilized by small buoyancy effects. A diffusional instability enhances the buoyant instability of a downward propagating front with there being a very strong interaction between these effects in this case.
机译:对于基于自催化反应的系统,讨论了可沿传播反应前沿发展的浮力驱动和扩散驱动的不稳定性之间的相互作用。取决于前沿在重力场中是上升还是下降,反应物比产品重还是轻,以及反应物扩散得更快,更慢或以与产品相同的速率扩散,有十二种不同的情况。进行了线性稳定性分析(LSA),其中针对代表性情况导出了色散曲线(增长率sigma与波数k的关系图),并对小波数进行了渐近分析。 LSA的结果表明,当初始反应物的密度大于反应产物的密度时,向上传播的前沿保持不稳定,而扩散驱动的不稳定性增强了这种不稳定性。当系统也具有扩散不稳定性时,漂浮稳定的向下传播前沿将变得不稳定。当初始反应物比反应产物轻时,任何扩散不稳定的向上传播的前沿都会通过小的浮力作用而稳定下来。扩散不稳定性增强了向下传播的锋面的浮力不稳定性,在这种情况下,这些效果之间存在非常强烈的相互作用。

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