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Interactive Boundary Layer (IBL)

机译:交互式边界层(IBL)

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摘要

We present here the Interacting Boundary Layer Equations. It is called Inviscid-Viscous Interactions as well. This is a way to solve an approximation of the Navier Stokes equations at large Reynolds number using the Ideal Fluid / Boundary Layer decomposition. But, instead of solving first the ideal Fluid and second the Boundary Layer, both are solved together. This "strong coupling" (or this Viscous-Inviscid Interaction) allows to compute separated flows. This was impossible in the classical Boundary Layer framework, because in this framework, the boundary layer is constrained by the Ideal Fluid which imposes its slip velocity at the wall. This coupling is justified in the Triple Deck theory which is the rational explanation of IBL. We present some numerical experiments showing some simple academic examples of interactions such as flows over bumps or wedges in subsonic, supersonic, subcritical and supercritical external flows and in pipes. Some examples from the literature are then presented.
机译:我们在这里介绍相互作用边界层方程。它也被称为无粘性-粘性相互作用。这是一种使用理想流体/边界层分解来求解大雷诺数下的Navier Stokes方程的近似方法。但是,不是首先解决理想的流体问题,其次是解决边界层问题,而是一起解决了问题。这种“强耦合”(或这种粘性-无粘相互作用)可以计算分离的流量。在经典边界层框架中这是不可能的,因为在此框架中,边界层受理想流体的约束,理想流体将其滑动速度施加在壁上。这种耦合在三层甲板理论中是合理的,这是对IBL的合理解释。我们提供了一些数值实验,显示了一些简单的相互作用的学术示例,例如在亚音速,超音速,亚临界和超临界外部流动以及管道中的隆起或楔形上的流动。然后介绍了一些文献中的例子。

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