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Modelling of vortex breakdown and calculation of large-scale kinetic energy on a slender delta wing using URANS and Reynolds-stress modelling

机译:利用URANS和雷诺应力模型对细长三角翼上的涡旋破坏进行建模并计算大型动能。

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A computational study regarding the accurate modelling of the unsteady flow over a slender delta-wing and the vortex breakdown (VB) identification by adopting a Reynolds-stress turbulence model is presented. The VB is identified by the pressure distributions, the stagnation point inside the vortex core and the voracity development over the delta-wing. Additionally, the whole range of the unsteady flow field kinetic energy, which is divided into two regions, is calculated. The first region is related to the modelled turbulent small-scales and the second to the resolved large-scales, which are produced due to the VB. The distributions of the small-scale, the large-scale and the total kinetic energy along the vortex core are presented, providing information regarding their development during VB. The results show that the adoption of URANS with an advanced/sophisticated turbulence model is able to identify and describe with consistency the VB onset and its development over a slender delta-wing.
机译:提出了关于细长三角翼上非定常流动的精确建模和采用雷诺应力湍流模型识别涡旋破坏(VB)的计算研究。 VB由压力分布,涡流核心内部的停滞点和三角翼上方的流动性发展确定。另外,计算了分为两个区域的非恒定流场动能的整个范围。第一个区域与建模的湍流小尺度有关,第二个区域与解析的大尺度有关,这是由VB产生的。给出了沿涡核的小尺度,大尺度和总动能的分布,提供了有关它们在VB期间的发展的信息。结果表明,采用具有先进/复杂湍流模型的URANS能够识别和描述VB发作及其在细长三角翼上的发展。

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