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Simulation of a suspended droplet under evaporation with Marangoni effects

机译:利用Marangoni效应模拟蒸发下的悬浮液滴

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We investigate the Marangoni effects in a hexane droplet under evaporation and close to its critical point. A lattice Boltzmann model is used to perform 3D numerical simulations. In a first case, the droplet is placed in its own vapor and a temperature gradient is imposed. The droplet locomotion through the domain is observed, where the temperature differences across the surface is proportional to the droplet velocity and the Marangoni effect is confirmed. The droplet is then set under a forced convection condition. The results show that the Marangoni stresses play a major role in maintaining the internal circulation when the superheated vapor temperature is increased. Surprisingly, surface tension variations along the interface due to temperature change may affect heat transfer and internal circulation even for low Weber number. Other results and considerations regarding the droplet surface are also discussed.
机译:我们研究了在蒸发下接近其临界点的己烷液滴中的马兰戈尼效应。格子Boltzmann模型用于执行3D数值模拟。在第一种情况下,将液滴置于其自身的蒸气中,并施加温度梯度。观察到液滴通过该区域的运动,其中整个表面的温差与液滴速度成正比,并证实了马兰戈尼效应。然后将液滴置于强制对流条件下。结果表明,当过热蒸汽温度升高时,Marangoni应力在维持内部循环中起主要作用。出乎意料的是,即使温度较低的韦伯数,由于温度变化引起的沿界面的表面张力变化也会影响传热和内部循环。还讨论了有关液滴表面的其他结果和注意事项。

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