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Numerical study on flow field in inlet plenum of a pebble-bed modular reactor

机译:卵石床模块化反应器进气室流场的数值研究

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Flow distribution and pressure drop analysis in the inlet plenum of a pebble-bed modular reactor (PBMR) have been performed numerically. Three-dimensional Navier-Stokes equations have been solved in conjunction with the k-ε model as a turbulence closure. Non-uniformity in the flow distribution is assessed for the reference case, and parametric studies have been performed for rising channels diameter, Reynolds number, angle between the rising channels, angle between the inlet ports, and aspect ratio of the plenum cross-section. Also, two different shapes of the inlet plenum, namely, rectangular and oval shapes, have been analyzed. The relative flow mal-distribution parameter variation shows that the flow distribution in rising channels for the reference case is strongly non-uniform. As the rising channels diameter is decreased, the flow uniformity as well as the pressure drop is found to increase. The flow distribution in the rising channels is independent of Reynolds number. Increase in the angle between the inlet ports and aspect ratio is found to increase the uniformity in flow distribution.
机译:卵石床模块化反应器(PBMR)的进口气室中的流动分布和压降分析已通过数值方式进行。三维Navier-Stokes方程已与k-ε模型一起作为湍流闭塞进行了求解。对于参考情况,评估了流量分布的不均匀性,并且对上升通道直径,雷诺数,上升通道之间的角度,入口端口之间的角度以及气室横截面的长宽比进行了参数研究。而且,已经分析了进气室的两种不同形状,即矩形和椭圆形。相对流量分布不均的参数变化表明,在参考情况下,上升通道中的流量分布非常不均匀。随着上升通道直径减小,发现流量均匀性以及压降增加。上升通道中的流量分布与雷诺数无关。发现入口之间的角度和长宽比之间的增加增加了流动分布的均匀性。

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