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Effective surface and boundary conditions for heterogeneous surfaces with mixed boundary conditions

机译:具有混合边界条件的异质表面的有效表面和边界条件

摘要

To deal with multi-scale problems involving transport from a heterogeneous and rough surface characterized by a mixed boundary condition, an effective surface theory is developed, which replaces the original surface by a homogeneous and smooth surface with specific boundary conditions. A typical example corresponds to a laminar flow over a soluble salt medium which contains insoluble material. To develop the concept of effective surface, a multi-domain decomposition approach is applied. In this framework, velocity and concentration at micro-scale are estimated with an asymptotic expansion of deviation terms with respect to macro-scale velocity and concentration fields. Closure problems for the deviations are obtained and used to define the effective surface position and the related boundary conditions. The evolution of some effective properties and the impact of surface geometry, Péclet, Schmidt and Damköhler numbers are investigated. Finally, comparisons are made between the numerical results obtained with the effective models and those from direct numerical simulations with the original rough surface, for two kinds of configurations.
机译:为了处理涉及从具有混合边界条件的非均匀粗糙表面传输的多尺度问题,开发了一种有效的表面理论,该理论用具有特定边界条件的均匀光滑表面代替了原始表面。一个典型的例子是在含有不溶物质的可溶盐介质上的层流。为了发展有效表面的概念,应用了多域分解方法。在此框架中,以相对于宏观速度和浓度场的偏差项的渐近展开来估计微观速度和浓度。获得偏差的闭合问题,并将其用于定义有效表面位置和相关的边界条件。研究了一些有效特性的演变以及表面几何形状,佩克利,施密特和达姆霍勒数的影响。最后,针对两种配置,将有效模型获得的数值结果与原始粗糙表面直接数值模拟得到的数值结果进行了比较。

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