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Oscillatory instability in a reaction front separating fluids of different densities

机译:在不同密度的反应前液体中的振荡不稳定性

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摘要

Reaction fronts described by the Kuramoto-Sivashinsky (KS) equation can exhibit complex behavior as they separate reacted from unreacted fluids. If the fluid of higher density is above a fluid of lower density, then the Rayleigh-Taylor instability can lead to fluid motion. In the reverse situation, where the lighter fluid is on top, gravitationally driven forces can stabilize a convectionless flat front inhibiting the complex front propagation described by the KS equation. In these cases, a critical density difference is required to provide stability to the flat front. A linear stability analysis shows that the transition from stable to unstable flat fronts can be oscillatory for viscous fluid motion. Once the transition takes place, the fronts exhibit oscillatory convection resulting in oscillations of the shape and speed of the front.
机译:Kuramoto-sivashinsky(KS)等式描述的反应前线可以表现出复杂的行为,因为它们分离从未反应的流体反应。 如果较高密度的流体高于密度较低的流体,则瑞利 - 泰勒不稳定性会导致流体运动。 在较轻流体在顶部的反向情况下,重力驱动的力可以稳定抑制KS方程描述的复杂前沿抑制的反相平坦的正面。 在这些情况下,需要临界密度差来为平坦的前部提供稳定性。 线性稳定性分析表明,从稳定到不稳定的平坦前沿的过渡可以是粘性流体运动的振荡。 一旦过渡发生,前线就会表现出振荡对流导致前方的形状和速度的振动。

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