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Modeling of three dimensional thermocapillary flows with evaporation at the interface based on the solutions of a special type of the convection equations

机译:基于一类特殊对流方程解的界面处蒸发的三维热毛细流模型

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Theoretical and numerical study of the convection processes, which are accompanied by evaporation/condensation, in the framework of new non-standard problem is largely motivated by new physical experiments. One of the principal questions is to understand the character and to evaluate the degree of influence of particular factors or their combined action on the structure of the joint flows of liquid and gas-vapor mixture. The flow topology is determined by four main mechanisms: natural and thermocapillary convection, tangential stresses and mass transfer due to evaporation at the interface. The mathematical modeling of the fluid flows in an infinite channel with a rectangular cross section is carried out on the basis of the solution of a special type of the convection equations. The effects of thermodiffusion and diffusive thermal conductivity in the gas phase and evaporation at the thermocapillary interface are taken into consideration. Numerical investigations are performed for the liquid – gas (ethanol – nitrogen) system under normal and low gravity. The fluid flows are characterized as translational and progressively rotational motions and can be realized in various forms.
机译:在新的非标准问题的框架内,对流过程伴随蒸发/冷凝的理论和数值研究很大程度上是由新的物理实验推动的。主要问题之一是了解其特性并评估特定因素的影响程度或其组合作用对液气混合气联合流动结构的影响。流动拓扑由四个主要机制决定:自然和热毛细管对流,切向应力以及由于界面处的蒸发引起的传质。在对流方程的一种特殊类型的解的基础上,对具有矩形横截面的无限通道中的流体流动进行数学建模。考虑了气相中热扩散和扩散热导率以及在热毛细管界面处蒸发的影响。在正常和低重力下对液体-气体(乙醇-氮气)系统进行了数值研究。流体流的特征在于平移和渐进旋转运动,并且可以以各种形式实现。

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