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CFD analysis of turbulent cross-flow in a staggered tube bundle equipped with grooved cylinders

机译:带有开槽圆柱的交错管束中湍流横流的CFD分析

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This study describes the Computational Fluid Dynamics (CFD) analysis of the turbulent cross-flow in a staggered tube bundle with transverse and longitudinal pitch-to-diameter ratio of 3.8 and 2.1 respectively. Two Longitudinal grooves are placed on the external surface at 90° and 270° degrees. Each cylinder has two grooves on the external surface of the cylinder. The Navier-Stokes equations of the turbulent flow are solved using Spalart almaras, k-ε realizable and k-ω SST, turbulence models provided by Fluent CFD code. The staggered tube bundle geometry simulations were performed at steady conditions. An adapted grid using static pressure, pressure coefficient and velocity gradient, furthermore, a second order upwind scheme were used. The CFD results were in agreement with the experimental data. The study demonstrates the capability of the CFD calculations in predicting flow characteristics around the bundle
机译:这项研究描述了交错的管束中横向和纵向螺距与直径之比分别为3.8和2.1的湍流横流的计算流体力学(CFD)分析。两个纵向凹槽分别以90°和270°度放置在外表面上。每个圆柱体在圆柱体的外表面上都有两个凹槽。使用Spalart almaras,k-ε可实现和k-ωSST,Fluent CFD代码提供的湍流模型来求解湍流的Navier-Stokes方程。交错的管束几何形状仿真是在稳定条件下进行的。使用静态压力,压力系数和速度梯度的自适应网格,此外,还使用了二阶迎风方案。 CFD结果与实验数据一致。该研究证明了CFD计算在预测束流特征方面的能力

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