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用于强制对流条件下液滴加热与蒸发的多松弛时间格子玻尔兹曼模型

Multirelaxation-time lattice Boltzmann model for droplet heating and evaporation under forced convection.

作者信息

Albernaz Daniel, Do-Quang Minh, Amberg Gustav

机构信息

Linné Flow Center, Department of Mechanics, The Royal Institute of Technology, Stockholm, Sweden.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Apr;91(4):043012. doi: 10.1103/PhysRevE.91.043012. Epub 2015 Apr 21.

Abstract

We investigate the evaporation of a droplet surrounded by superheated vapor with relative motion between phases. The evaporating droplet is a challenging process, as one must take into account the transport of mass, momentum, and heat. Here a lattice Boltzmann method is employed where phase change is controlled by a nonideal equation of state. First, numerical simulations are compared to the D(2) law for a vaporizing static droplet and good agreement is observed. Results are then presented for a droplet in a Lagrangian frame under a superheated vapor flow. Evaporation is described in terms of the temperature difference between liquid-vapor and the inertial forces. The internal liquid circulation driven by surface-shear stresses due to convection enhances the evaporation rate. Numerical simulations demonstrate that for higher Reynolds numbers, the dynamics of vaporization flux can be significantly affected, which may cause an oscillatory behavior on the droplet evaporation. The droplet-wake interaction and local mass flux are discussed in detail.

摘要

我们研究了被过热蒸汽包围且两相之间存在相对运动的液滴的蒸发情况。蒸发液滴是一个具有挑战性的过程,因为必须考虑质量、动量和热量的传输。这里采用了一种格子玻尔兹曼方法,其中相变由非理想状态方程控制。首先,将数值模拟结果与蒸发静态液滴的D(2)定律进行比较,观察到良好的一致性。然后给出了在过热蒸汽流作用下,拉格朗日坐标系中液滴的结果。蒸发是根据液-气之间的温差和惯性力来描述的。由对流引起的表面剪切应力驱动的内部液体循环提高了蒸发速率。数值模拟表明,对于较高的雷诺数,蒸发通量的动力学可能会受到显著影响,这可能会导致液滴蒸发出现振荡行为。详细讨论了液滴-尾流相互作用和局部质量通量。

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