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A dissipation rate equation for low-Reynolds-number and near-wall turbulence

机译:低雷诺数和近壁湍流的耗散率方程

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摘要

Two-equation turbulence models are usually formulated for specific flow types and are seldom validated against a variety of flows to account for near-wall and low-Reynolds-number effects simultaneously. In addition to low-Reynolds-number effects, near-wall flows also experience wall blocking, which is absent in free flows. Consequently, near-wall modifications to two-equation models could be quite different from low-Reynolds-number corrections. Besides, it is known that existing two-equation models perform poorly when used to calculate plane wall jets and two-dimensional backstep flows. These problems could be traced to the modeling of the dissipation rate equation. In this paper an attempt is made to improve the modeling of the dissipation rate equation so that it could successfully predict both free and wall-bounded shear flows including plane wall jets and backstep flows. The predictions are compared with experimental and direct numerical simulation data whenever available. Most of the data used are obtained at low Reynolds numbers. Good correlation with data is obtained. Therefore, for the first time, a model capable of correctly predicting free and wall-bounded shear flows, backstep flows, and plane wall jets is available.
机译:通常针对特定的流动类型制定二方程湍流模型,很少针对各种流动对它们进行验证,以同时考虑近壁和低雷诺数效应。除了低雷诺数效应外,近壁流动还受到壁的阻塞,这在自由流动中是不存在的。因此,对两方程模型的近壁修改可能与低雷诺数校正有很大不同。此外,已知现有的两方程模型在用于计算平面壁射流和二维反冲流时性能较差。这些问题可以追溯到耗散率方程的建模。本文尝试改进耗散率方程的建模,以便它可以成功地预测自由和边界边界的剪切流,包括平面壁喷流和后向流。将预测与可用的实验和直接数值模拟数据进行比较。使用的大多数数据都是在低雷诺数下获得的。获得与数据的良好相关性。因此,首次可以使用能够正确预测自由和边界约束的剪力流,反冲流和平面壁面射流的模型。

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