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Large eddy simulation of spanwise rotating turbulent channel and duct flows by a finite volume code at low reynolds numbers

机译:低雷诺数下有限体积编码的翼展旋转湍流通道和管道流动的大涡模拟

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摘要

The objective of this study is to show the highly complex features of rotational turbulent flow using a widely known finite volume code. The flow subjected to an orthogonal rotation is investigated both qualitatively and quantitatively in a three-dimensional channel and a duct using FLUENT. The predictions of rotational flow calculations, presented for low Reynolds numbers, both in channel and duct are in good agreement with the DNS predictions. It is of interest to present the capability of the code for capturing the multi-physics of internal flow phenomena and to discuss the Coriolis effects for two rotational rates. The results show that FLUENT is able to predict accurately first and second order turbulent statistics and it also captures the proper secondary flow physics which occur due to rotation and the geometry itself. These results are very encouraging for the simulation of the flow in a centrifugal compressor, which is the main goal of the authors in the long term. © Springer-Verlag Berlin Heidelberg 2005.
机译:这项研究的目的是使用广为人知的有限体积代码显示旋转湍流的高度复杂特征。使用FLUENT在三维通道和管道中定性和定量地研究了正交旋转的流动。通道和管道中针对低雷诺数的旋转流计算预测与DNS预测非常吻合。有趣的是,提出了该代码捕获内部流现象的多物理场的能力,并讨论了两种转速下的科里奥利效应。结果表明,FLUENT能够准确预测一阶和二阶湍流统计量,并且还可以捕获由于旋转和几何形状本身而发生的正确的二次流物理场。这些结果对于模拟离心压缩机中的流动非常令人鼓舞,这是作者长期的主要目标。 ©施普林格出版社柏林海德堡2005年。

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