首页> 外文会议>HTD-vol.376-2; ASME(American Society of Mechanical Engineers) International Mechanical Engineering Congress and Exposition; 20051105-11; Orlando,FL(US) >A NEW COMPUTATIONAL METHOD TO TRACK A LIQUID/VAPOR INTERFACE WITH MASS TRANSFER, DEMONSTRATED ON THE CONCENTRATION DRIVEN EVAPORATION FROM A CAPILLARY TUBE, AND THE MARANGONI EFFECT
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A NEW COMPUTATIONAL METHOD TO TRACK A LIQUID/VAPOR INTERFACE WITH MASS TRANSFER, DEMONSTRATED ON THE CONCENTRATION DRIVEN EVAPORATION FROM A CAPILLARY TUBE, AND THE MARANGONI EFFECT

机译:一种新的计算方法,该方法以质量转移跟踪液体/蒸气界面,并以毛细管驱动的浓度驱动蒸发和马兰戈尼效应为例

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摘要

A new computational liquid/vapor interface tracking technique is developed to model an interface between a liquid and a vapor including mass transfer. This technique does not require the use of an additional transport equation, as does the VOF method, while still being implemented without a complicated solution procedure. This new interface tracking technique is used to capture the liquid/vapor interface in a capillary tube of 100 μm scale. The diffusion driven evaporation process is studied, along with the Marangoni convection that is caused by the temperature gradient along the interface. The results are qualitatively and quantitatively compared to existing experimental data.
机译:开发了一种新的计算液体/蒸气界面跟踪技术,以对液体和包含质量传递的蒸气之间的界面进行建模。这种技术不需要像VOF方法那样使用附加的传输方程,同时仍可以在没有复杂的求解过程的情况下实现。这种新的界面跟踪技术用于捕获100μm规模的毛细管中的液体/蒸汽界面。研究了扩散驱动的蒸发过程,以及沿界面温度梯度引起的Marangoni对流。将结果与现有实验数据进行定性和定量比较。

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