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A comparative study of full Navier-Stokes and Reduced Navier-Stokes analyses for separating flows within a diffusing inlet S-duct

机译:完整的Navier-Stokes和简化的Navier-Stokes分析的比较研究,用于分离扩散入口S管内的流

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摘要

A three-dimensional implicit Full Navier-Stokes (FNS) analysis and a 3D Reduced Navier-Stokes (RNS) initial value space marching solution technique has been applied to a class of separate flow problems within a diffusing S-duct configuration characterized as vortex-liftoff. Both Full Navier-Stokes and Reduced Navier-Stokes solution techniques were able to capture the overall flow physics of vortex lift-off, however more consideration must be given to the development of turbulence models for the prediction of the locations of separation and reattachment. This accounts for some of the discrepancies in the prediction of the relevant inlet distortion descriptors, particularly circumferential distortion. The 3D RNS solution technique adequately described the topological structure of flow separation associated with vortex lift-off.
机译:三维隐式全纳维-斯托克斯(FNS)分析和3D缩小纳维-斯托克斯(RNS)初始值空间行进求解技术已应用于特征为涡旋的S形扩散管道中的一类单独的流动问题升空。 Full Navier-Stokes和降低的Navier-Stokes解决方案技术都能够捕获涡旋升起的整体流动物理特性,但是必须更多地考虑湍流模型的发展来预测分离和重新附着的位置。这解释了相关进气口变形描述符(特别是周向变形)的预测中的某些差异。 3D RNS解决方案技术充分描述了与涡旋剥离相关的流动分离的拓扑结构。

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