论文标题
简化城市流的高分辨率大型模拟
High-resolution large-eddy simulations of simplified urban flows
论文作者
论文摘要
基于自由流速度和障碍高度,对两个矩形障碍物周围的流量进行了高保真大型模拟。输入流是开发的湍流边界层。分析了三种流动机制的均值成分,湍流波动和湍流运动能量预算的术语:撇流流,唤醒干扰和孤立的粗糙度。在流量发生最重大变化的情况下,可以确定三个区域:第一个障碍的唤醒,第二个障碍物前的区域以及第二个障碍物。在撇流案例中,障碍物之间腔的湍流活动受到限制,主要发生在第二个障碍物前面的一个小区域。在唤醒干扰案件中,渗透腔与第一个障碍物的尾流之间存在很强的相互作用。这种相互作用导致障碍物之间的湍流波动更大。在孤立的冲突情况下,第一个障碍的刺激与孤立的障碍物非常吻合。第二个障碍物周围出现了具有强烈动荡波动的分离气泡。
High-fidelity large-eddy simulations of the flow around two rectangular obstacles are carried out at a Reynolds number of 10,000 based on the free-stream velocity and the obstacle height. The incoming flow is a developed turbulent boundary layer. Mean-velocity components, turbulence fluctuations, and the terms of the turbulent-kinetic-energy budget are analyzed for three flow regimes: skimming flow, wake interference, and isolated roughness. Three regions are identified where the flow undergoes the most significant changes: the first obstacle's wake, the region in front of the second obstacle, and that around the second obstacle. In the skimming-flow case, turbulence activity in the cavity between the obstacles is limited and mainly occurs in a small region in front of the second obstacle. In the wake-interference case, there is a strong interaction between the free-stream flow that penetrates the cavity and the wake of the first obstacle. This interaction results in more intense turbulent fluctuations between the obstacles. In the isolated-roughness case, the wake of the first obstacle is in good agreement with that of an isolated obstacle. Separation bubbles with strong turbulent fluctuations appear around the second obstacle.