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NUMERICAL SIMULATION OF INTERIOR FLOW IN EVAPORATION DROPLET

机译:蒸发液滴内部流动的数值模拟

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In this present study, the VOF (Volume of Fluid) approach is adopted to capture the interface, and CSF (Continuum Surface Force) model to calculate the surface tension, and the governing equations are founded in numerical simulation of evaporating droplets. In this work, a water droplet is assumed to be suspending in high temperature air, and the gravity of a droplet is ignored. During evaporating process of the droplet, the internal circulation flow will be induced due to the gradient of temperature at the droplet surface. The interface flows from high temperature area to low temperature area, which pulls the liquid to produce convective flow inside the droplet called as Marangoni flow. Marangoni flow makes the temperature distribution tend to uniformity, which enhances heat transfer but weakens Marangoni flow in turn. So, during droplet evaporation, the internal flow is not steady.
机译:在本研究中,采用VOF(流体体积)方法捕获界面,并使用CSF(连续表面力)模型计算表面张力,并在蒸发液滴的数值模拟中建立控制方程。在这项工作中,假设水滴悬浮在高温空气中,而忽略水滴的重力。在液滴的蒸发过程中,由于液滴表面的温度梯度,将引起内部循环流。界面从高温区域流向低温区域,从而拉动液体在液滴内部产生对流,称为对流,称为Marangoni流。马兰戈尼流使温度分布趋于均匀,从而增强了热传递,但又反过来削弱了马兰戈尼流。因此,在液滴蒸发期间,内部流动不稳定。

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