首页> 外文会议>The proceedings of the eighteenth (2008) international offshore and polar engineering conference (ISOPE-2008) >Finite Element Modelling of Scour Around a Subsea Structure in Steady Currents
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Finite Element Modelling of Scour Around a Subsea Structure in Steady Currents

机译:稳定水流作用下海底结构冲刷的有限元模拟

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In this study a three-dimensional finite element numerical model is established for simulating local scour around a subsea structure in steady currents. The flow is simulated by solving the Reynolds-Averaged Navier-Stokes equations with a k-ω turbulent model closure. Both suspended load and bed-load sediment transport rates are included in the model. Efforts are made to reduce the computational time associated with three-dimensional morphological modelling. These include the use of wall-function to avoid resolving the near-wall boundary layers, large morphological time step and parallel computing techniques. Scour around a submerged wall mounted vertical circular cylinder is simulated. The effect of the cylinder height on the scour is investigated.
机译:在这项研究中,建立了三维有限元数值模型,用于模拟稳定水流中海底结构周围的局部冲刷。通过求解具有k-ω湍流模型闭合的Reynolds平均Navier-Stokes方程来模拟流动。该模型同时包括了悬浮载荷和床载荷沉积物的输送速率。努力减少与三维形态建模相关的计算时间。这些措施包括使用墙函数避免解析近墙边界层,较大的形态学时间步长和并行计算技术。模拟了水下壁挂式垂直圆柱周围的冲刷。研究了圆筒高度对冲刷的影响。

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