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Study of the Shock Wave-Turbulent Boundary Layer Interaction Using a 3D von Kármán Length Scale

  • Jing Lei Xu
  • , You Fu Song
  • , Yang Zhang*
  • , Jun Qiang Bai
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Traditional turbulence models are initially formulated and calibrated under incompressible conditions. Thus, these models are always of low fidelity when extended to high speed, complex and compressible flows. In this work, a compressible von Kármán length scale is proposed for compressible flows considering the variable densities. The length scale is the ratio between the new vorticity and its gradient. The new length scale is actually based on phenomenological theory, which is then integrated into the KDO (turbulence Kinetic energy Dependent Only) turbulence model, arriving at a compressible model called CKDO (Compressible KDO). In the CKDO turbulence model, all the extra terms produced by compressibility are modeled as dissipation. Compression corners of 8, 16, 20 and 24 angles are studied within SST, SA, KDO and CKDO. These test cases are known as the typical shock wave-boundary layer interactions. The results show that the new length scale in CKDO is able to well capture the surface pressure and skin friction distributions. Besides, compared with the standard von Kármán length scale, the new length scale in CKDO can better capture the size and position of the separation bubble. With the increase of the corner angle, CKDO shows more prominent potential for describing compressible flows.

源语言英语
页(从-至)57-66
页数10
期刊International Journal of Nonlinear Sciences and Numerical Simulation
18
1
DOI
出版状态已出版 - 1 2月 2017

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