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首页> 外文期刊>Journal of nuclear science and technology >Benchmark Simulation Of Turbulent Flow Through A Staggered Tube Bundle To Support Cfd As A Reactor Design Tool. Part I: Srans Cfd Simulation
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Benchmark Simulation Of Turbulent Flow Through A Staggered Tube Bundle To Support Cfd As A Reactor Design Tool. Part I: Srans Cfd Simulation

机译:通过交错管束以支持Cfd作为反应堆设计工具的湍流流动的基准模拟。第一部分:Srans Cfd模拟

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摘要

Time-invariant and time-variant numerical simulations of flow through a staggered tube bundle array, idealizing the lower plenum (LP) subsystem configuration of a very high temperature reactor (VHTR), were performed. In Part I, the CFD prediction of fully periodic isothermal tube-bundle flow using steady Reynolds-averaged Navier-Stokes (SRANS) equations with common turbulence models was investigated at a Reynolds number (Re) of 1.8 × 104, based on the tube diameter and inlet velocity. Three first-order turbulence models, standard κ-ω turbulence, renormalized group (RNG) k-e, and shear stress transport (SST) κ-ω models, and a second-order turbulence model, Reynolds stress model (RSM), were considered. A comparison of CFD simulations and experiment results was made at five locations along (x,y) coordinates. The SRANS simulation showed that no universal model predicted the turbulent Reynolds stresses, and generally, the results were marginal to poor. This is because these models cannot accurately model the periodic, spatiotemporal nature of the complex wake flow structure.
机译:进行了通过交错管束阵列的流动的时不变和时变数值模拟,理想化了超高温反应堆(VHTR)的下气室(LP)子系统配置。在第一部分中,基于管径,在1.8×104的雷诺数(Re)下,使用具有常见湍流模型的稳态雷诺平均Navier-Stokes(SRANS)方程研究了全周期等温管束流动的CFD预测和入口速度。考虑了三个一阶湍流模型,标准κ-ω湍流,重归一化组(RNG)k-e和切应力传递(SST)κ-ω模型以及一个二阶湍流模型,雷诺应力模型(RSM)。在(x,y)坐标的五个位置上比较了CFD模拟和实验结果。 SRANS仿真表明,没有通用模型可以预测雷诺湍流的湍流应力,通常,结果差强人意。这是因为这些模型无法准确地建模复杂尾流结构的周期性,时空性质。

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