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Numerical simulation and modeling of liquid film evaporation inside axisymmetric reentrant cavities

机译:轴对称凹腔内液膜蒸发的数值模拟与建模

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Evaporation of thin liquid films inside reentrant cavities occurs in several boiling processes where enhanced surfaces are utilized. In this work, evaporation from a single reentrant cavity with an additional thin channel is studied. The channel allows the backflow of liquid from the pool into the cavity during bubble growth. Direct numerical simulations were performed, showing a strong relation between flow to the film inside the cavity and bubble growth at the pore. Additionally, a model was created with a novel modeling approach which is based on solving the Young-Laplace equation. From the model characteristic nondimensional parameters can be obtained and the influence of geometry variations on hydrodynamics can be studied.
机译:进入凹腔内的液体薄膜的蒸发发生在几个沸腾过程中,其中利用了增强的表面。在这项工作中,研究了从具有额外细通道的单个凹腔蒸发。该通道允许在气泡生长期间液体从池回流到空腔中。进行了直接数值模拟,显示出腔内膜的流动与孔中气泡的增长之间有很强的关系。此外,使用新颖的建模方法创建了一个模型,该方法基于求解Young-Laplace方程的基础。从模型中可以获得特征性的无量纲参数,并且可以研究几何变化对流体动力学的影响。

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