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Large-eddy simulation of shallow turbulent wakes behind a conical island

机译:锥形岛后浅湍流尾迹的大涡模拟

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摘要

Large-Eddy Simulations (LESs) and experiments were employed to study the influence of water depth on the hydrodynamics in the wake of a conical island for emergent, shallow, and deeply submerged conditions. The Reynolds numbers based on the island's base diameter for these conditions range from 6500 to 8125. LES results from the two shallower conditions were validated against experimental measurements from an open channel flume and captured the characteristic flow structures around the cone, including the attached recirculation region, vortex shedding, and separated shear layers. The wake was impacted by the transition from emergent to shallow submerged flow conditions with more subtle changes in time-averaged velocity and instantaneous flow structures when the submergence increases further. Despite differences in the breakdown of the separated shear layers, vortex shedding, and the upward flow region on the leeward face (once the cone's apex is submerged), similar flow structures to cylinder flow were observed. These include an arch vortex tilted in the downstream direction and von Karman vortices in the far-wake. Spectra of velocity time series and the drag coefficient indicated that the vortex shedding was constrained by the overtopping flow layer, and thus the shedding frequency decreased as the cone's apex became submerged. Finally, the generalised flow structures in the wake of a submerged conical body are outlined.
机译:采用大涡模拟(LESs)和实验研究了圆锥形岛后突水,浅水和深水条件下水深对流体动力学的影响。在这些条件下,基于岛底直径的雷诺数在6500至8125之间。两个较浅条件的LES结果与明渠水槽的实验测量值进行了验证,并捕获了圆锥周围的特征流结构,包括连接的回流区域。 ,涡旋脱落和分离的剪切层。尾流受到从涌入到浅水流条件的转变的影响,当水深进一步增加时,时间平均速度和瞬时流结构会发生更细微的变化。尽管分离的剪切层的破裂,涡旋脱落和背风面上的向上流动区域(一旦圆锥体的顶点被淹没)存在差异,但观察到的流动结构与圆柱体流动相似。这些包括向下游方向倾斜的弓形涡旋和远处的冯卡门涡旋。速度时间序列和阻力系数谱表明,涡流的脱落受到顶流层的限制,因此,随着锥顶的浸没,脱落频率降低。最后,概述了浸没圆锥体后的广义流动结构。

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