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Numerical investigation of the evolution and breakup of an evaporating liquid film on a structured wall

机译:结构壁上蒸发液膜演变和破裂的数值研究

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This paper examines the evolution and rupture of a thin liquid film evaporating on a structured wall and the concomitant heat and mass transport. The heat is supplied either from the side of the wall or from the hot ambient gas. An evolution equation for the film thickness is derived in the framework of the long-wave theory under the assumption that the film thickness is small compared to the length scale of film deformation. The resulting fourth order partial differential equation is solved numerically employing a finite difference scheme using a MATLAB code. The results show that, in the case of a hot wall, the film breakup may occur even in the absence of evaporation. The reason for this breakup is Marangoni convection driven by uneven temperature distribution at the liquid-gas interface due to the wall structure. With increasing evaporation rate the rupture time decreases and the position at which the rupture occurs is shifted towards the crests of the wall topography. Additionally, it is found that the wave length of the wall structure has a non-monotonous effect on rupture time. If the film is heated by the ambient gas, the liquid-gas interface tends to follow the wall topography shape.
机译:本文研究了在结构壁上蒸发的液体薄膜的演变和破裂以及随之而来的热量和质量传递。热量从壁的侧面或从热的环境气体中提供。在假设膜厚比膜变形的长度尺度小的情况下,在长波理论的框架中导出了膜厚的演化方程。所得的四阶偏微分方程使用有限差分方案使用MATLAB代码以数值方式求解。结果表明,在热壁的情况下,即使没有蒸发也可能发生膜破裂。破裂的原因是由于壁结构,液-气界面处温度分布不均匀,导致了马兰戈尼对流。随着蒸发速率的增加,破裂时间减少,破裂发生的位置移向壁形特征的波峰。另外,发现壁结构的波长对破裂时间具有非单调的影响。如果膜被环境气体加热,则液-气界面倾向于遵循壁形。

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