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Analysis of dynamical flow structure in a square arrayed rod bundle

机译:方阵棒束动力流结构分析

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Large eddy simulation (LES) of turbulent flow in a bare rod bundle was performed, and a new concept about the flow structure that enhances heat transport between subchannels was proposed. To investigate the geometrical effect, the LES was performed for three different values of rod diameter over pitch ratio (D/P=0.7, 0.8, 0.9). The computational domain containing 4 subchannels was large enough to capture large-scale structures wide across subchannels. Lateral flow obtained was unconfined in a subchannel, and some flows indicated a pulsation through the rod gap between subchannels. The gap flow became strong as D/P increased, as existing experimental studies had reported. Turbulence intensity profile in the rod gap suggested that the pulsation was caused by the turbulence energy transferred from the main flow to the wall-tangential direction. This implied that the flow pulsation was an unsteady mode of the secondary flow and arose from the same geometrical effect of turbulence. This implication was supported by the analysis results: two-points correlation functions of fluctuating velocities indicated two length-scales, P-D and D, respectively of cross-sectional and longitudinal motions; turbulence stress in the cross-sectional mean flow contained a non-potential component, which represented energy injection through the unsteady longitudinal fluid motion.
机译:对裸棒束中的湍流进行了大涡模拟(LES),提出了一种关于增强子通道之间传热的流动结构的新概念。为了研究几何效果,对杆直径与螺距比的三个不同值(D / P = 0.7、0.8、0.9)执行了LES。包含4个子通道的计算域足够大,可以捕获跨子通道的大型结构。所获得的横向流不受限制在一个子通道中,并且一些流表明通过子通道之间的杆间隙产生了脉动。正如现有的实验研究所报道的,随着D / P的增加,间隙流变得很强。杆间隙中的湍流强度分布表明,脉动是由从主流向壁切线方向传递的湍流能量引起的。这意味着流动脉动是二次流动的不稳定模式,并且是由相同的湍流几何效应引起的。分析结果支持了这种含义:波动速度的两点相关函数表明了横截面和纵向运动的两个长度尺度P-D和D。横截面平均流中的湍流应力包含一个非电位分量,该分量代表通过不稳定的纵向流体运动注入的能量。

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