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CFD Simulations of Two Rectangular Water Jets Impinging on a Water Pool

机译:两种矩形水喷射撞击水池的CFD仿真

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CFD simulations of two water jets emanating from rectangular pipes of large aspect ratio and impinging on a water pool are performed using the commercial CFD software ANSYS Fluent. Reynolds-Averaged Navier-Stokes (RANS) equations with a number of turbulence models, namely the SA, k-∈ and SST k-ω are solved. The computations are compared with the experimental data to assess the accuracy of various turbulence models. It is shown that majority of the details of the flow field during the initial phase of jets interaction and intermediate phase of jets merging are best captured by k-∈ model but the final phase of combining of two jets into a single jet are best captured by the SST k-ω model due to its shear stress transport correction. The process of evolution of interaction of two jets from the initial phase to final phase is described in detail.
机译:使用商业CFD软件ANSYS流畅,执行从大宽高比的矩形管道和冲击水池撞击水池的两个水喷射器的CFD模拟。解决了具有多个湍流模型的reynolds-passal-stokes(Rans)方程,即SA,K-∈和SST k-Ω。将计算与实验数据进行比较,以评估各种湍流模型的准确性。结果表明,在喷气机相互作用和喷射器合并的中间相期间的流场的大多数细节最佳地被K-α模型捕获,但是最终将两个喷射器组合成单个喷射的阶段最佳捕获其剪切应力传输校正引起的SST k-ω模型。详细描述了来自初始阶段的两个喷射的相互作用的进化过程。

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