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Some physical aspects of shock wave/boundary layer interactions

机译:冲击波/边界层相互作用的一些物理方面

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When the flow past a vehicle flying at high velocity becomes supersonic, shock waves form, caused either by a change in the slope of a surface, a downstream obstacle or a back pressure constraining the flow to become subsonic. In modern aerodynamics, one can cite a large number of circumstances where shock waves are present. The encounter of a shock wave with a boundary layer results in complex phenomena because of the rapid retardation of the boundary layer flow and the propagation of the shock in a multilayered structure. The consequence of shock wave/boundary layer interaction (SWBLI) are multiple and often critical for the vehicle or machine performance. The shock submits the boundary layer to an adverse pressure gradient which may strongly distort its velocity profile. At the same time, in turbulent flows, turbulence production is enhanced which amplifies the viscous dissipation leading to aggravated performance losses. In addition, shock-induced separation most often results in large unsteadiness which can damage the vehicle structure or, at least, severely limit its performance. The article first presents basic and well-established results on the physics of SWBLI corresponding to a description in terms of an average two-dimensional steady flow. Such a description allows apprehending the essential properties of SWBLIs and drawing the main features of the overall flow structure associated with SWBLI. Then, some emphasis is placed on unsteadiness in SWBLI which constitutes a salient feature of this phenomenon. In spite of their importance, fluctuations in SWBLI have been considered since a relatively recent date although they represent a domain which deserves a special attention because of its importance for a clear physical understanding of interactions and of its practical consequences as in aeroelasticity.
机译:当经过高速飞行的车辆的气流变成超音速时,由于表面的坡度变化,下游障碍物或背压而导致形成冲击波,从而形成冲击波。在现代空气动力学中,人们可以引用许多存在冲击波的情况。冲击波与边界层的相遇会导致复杂的现象,因为边界层流动的迅速延迟以及冲击在多层结构中的传播。冲击波/边界层相互作用(SWBLI)的后果是多重的,并且通常对车辆或机器的性能至关重要。冲击使边界层承受不利的压力梯度,这可能会严重扭曲其速度分布。同时,在湍流中,湍流产生得到增强,这加剧了粘性耗散,导致性能损失加剧。另外,由冲击引起的分离通常会导致较大的不稳定,这会损坏车辆结构或至少严重限制其性能。本文首先介绍了SWBLI物理的基本和公认的结果,对应于关于平均二维稳定流的描述。这样的描述允许理解SWBLI的基本属性,并绘制与SWBLI相关的整体流结构的主要特征。然后,将重点放在SWBLI中的不稳定上,这是该现象的显着特征。尽管它们的重要性,但自最近以来,SWBLI的波动就被考虑了,尽管它们代表了一个特别值得关注的领域,因为它对于清楚地理解相互作用以及其在空气弹性中的实际后果非常重要。

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