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Numerical investigation of flow and scour around a vertical circular cylinder

机译:垂直圆柱体绕流和冲刷的数值研究

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摘要

Flow and scour around a vertical cylinder exposed to current are investigated by using a three-dimensional numerical model based on incompressible Reynolds-averaged Navier–Stokes equations. The model incorporates (i) k-ω turbulence closure, (ii) vortex-shedding processes, (iii) sediment transport (both bed and suspended load), as well as (iv) bed morphology. The influence of vortex shedding and suspended load on the scour are specifically investigated. For the selected geometry and flow conditions, it is found that the equilibrium scour depth is decreased by 50% when the suspended sediment transport is not accounted for. Alternatively, the effects of vortex shedding are found to be limited to the very early stage of the scour process. Flow features such as the horseshoe vortex, as well as lee-wake vortices, including their vertical frequency variation, are discussed. Large-scale counter-rotating streamwise phase-averaged vortices in the lee wake are likewise demonstrated via numerical flow visualization. These features are linked to scour around a vertical pile in a steady current.
机译:通过使用基于不可压缩的雷诺平均Navier-Stokes方程的三维数值模型,研究了暴露于电流的垂直圆柱体周围的流动和冲刷。该模型包括(i)k-ω湍流闭合,(ii)涡流脱落过程,(iii)泥沙运移(包括床和悬浮载荷)以及(iv)床形态。专门研究了涡流脱落和悬浮载荷对冲刷的影响。对于选定的几何形状和流动条件,发现当不考虑悬浮泥沙输送时,平衡冲刷深度降低了50%。或者,发现涡流脱落的影响仅限于冲刷过程的早期。讨论了诸如马蹄涡和流苏涡等流动特征,包括它们的垂直频率变化。通过数值流可视化同样显示了背风中的大规模反向旋转流平均相位涡流。这些特征与以恒定电流在垂直桩周围的冲刷有关。

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