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Extended classification of the buoyancy-driven flows induced by a neutralization reaction in miscible fluids. Part 1. Experimental study

机译:由混溶性流体中的中和反应引起的浮力驱动流的扩展分类。 第1部分实验研究

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The buoyancy-driven instabilities triggered by neutralization reaction were studied experimentally in a miscible two-layer system placed in a vertically oriented Hele-Shaw cell. The initial density stratification was always set to exclude the development of the Rayleigh-Taylor instability. The problem was examined for a few reactant pairs formed by a strong acid and a strong base. To classify the numerous experimental observations we introduced a dimensionless parameter, namely, a reaction-induced buoyancy number, which defines the density of the reaction zone relative to that of the upper layer. We show that, depending on the value of this parameter, one of two global scenarios develops in the system right after the layers came into contact. If 1$]]>, the process is governed mainly by diffusion, which results later on in the development of relatively weak convective motion caused by a differential-diffusion effect. Besides the irregular finger-type flow structures, reported earlier in numerous studies, we found a new type of instability, called the concentration-dependent diffusion instability, which is characterized by the formation of a regular cell-type convective pattern. In the case, the unstable density stratification above the reaction front leads to the development of vigorous convection in the upper layer, forcing the reaction front to move downwards fast, so that it takes just a few minutes for reagents to burn out. We show that a new parameter can be used to plot the stability maps, which allows us to predict reaction-diffusion-convection processes in similar systems prior to experiment.
机译:通过中和反应触发的浮力驱动的不稳定性在放置在垂直定向的Hele-Shaw细胞中的混溶性双层系统中进行实验研究。初始密度分层始终设定为排除瑞利泰勒不稳定性的发展。检查由强酸和强碱形成的少数反应物对中的问题。为了分类许多实验观察,我们引入了无量纲参数,即反应诱导的浮力数,其限定了反应区的密度相对于上层的密度。我们展示了,根据此参数的值,在图层接触后,两个全局方案中的两个全局方案之一在系统中开发。如果1 $]]>,该过程主要由扩散管辖,从而在差分扩散效果引起的相对较弱的对流运动的发展方面。除了不规则的手指型流动结构外,在多项研究中提前报告,我们发现一种新型的不稳定性,称为浓度依赖性扩散不稳定,其特征在于形成规则的细胞型对流模式。在这种情况下,反应前方的不稳定密度分层导致上层剧烈的剧烈对流的发展,迫使反应前方快速向下移动,因此试剂只需要几分钟才能烧坏。我们表明,可以使用新参数来绘制稳定性地图,该展示映射使我们能够在实验之前预测类似系统中的反作用 - 扩散对流过程。

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    《Oceanographic Literature Review》 |2021年第5期|1174-1175|共2页
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