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CFD Analyses of Natural Circulation in the Air-Cooled Reactor Cavity Cooling System

机译:风冷反应堆腔冷却系统自然循环的CFD分析

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The Natural Convection Shutdown Heat Removal Test Facility (NSTF) is currently being built at Argonne National Laboratory, to evaluate the feasibility of the passive Reactor Cavity Cooling System (RCCS) for Next Generation Nuclear Plant (NGNP). CFD simulations have been applied to evaluate the NSTF and NGNP RCCS designs. However, previous simulations found that convergence was very difficult to achieve in simulating the complex natural circulation. To resolve the convergence issue and increase the confidence of the CFD simulation results, additional CFD simulations were conducted using a more detailed mesh and a different solution scheme. It is found that, with the use of coupled flow and coupled energy models, the convergence can be greatly improved. Furthermore, the effects of convection in the cavity and the effects of the uncertainty in solid surface emissivity are also investigated.
机译:目前,阿贡国家实验室正在建立自然对流关机排热测试设备(NSTF),以评估用于下一代核电站(NGNP)的被动反应堆腔冷却系统(RCCS)的可行性。 CFD仿真已用于评估NSTF和NGNP RCCS设计。但是,以前的模拟发现,在模拟复杂的自然循环中很难实现收敛。为了解决收敛性问题并增加CFD仿真结果的可信度,使用更详细的网格和不同的解决方案进行了额外的CFD仿真。发现,通过使用耦合流和耦合能量模型,可以大大提高收敛性。此外,还研究了腔中对流的影响以及固体表面发射率不确定性的影响。

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