首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >TWO-PHASE MODEL FOR SIMULATING CURRENT-INDUCED SCOUR BENEATH SUBSEA PIPELINES AT DIFFERENT INITIAL ELEVATIONS
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TWO-PHASE MODEL FOR SIMULATING CURRENT-INDUCED SCOUR BENEATH SUBSEA PIPELINES AT DIFFERENT INITIAL ELEVATIONS

机译:在不同初始高度初始高度下模拟电流引起的冲刷的两相模型

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When a subsea pipeline is laid on an uneven seabed, the pipeline can have an initial elevation, potentially compromising its on-bottom stability; scouring due to flow conditions around the pipe can further exacerbate the problem. We assess the capability of the two-phase Eulerian-Eulerian OpenFOAM solver, twoPhaseEulerFoam, in terms of predicting the equilibrium scour depth beneath a pipe at different initial elevations under a steady current for the live bed condition. The predictions were found to be in good agreement with published experimental and numerical results; however, similar to a recent study involving another two-phase Eulerian-Eulerian model, the scour time scale was under-predicted. The predicted equilibrium scour depth was seen to decrease with an increase in the initial pipe elevation. The numerical results were also compared to predictions that were made using previous empirical equations. The most comprehensive equation to date showed a good agreement with the present numerical results. We conclude that this open-source solver, twoPhaseEulerFoam, can be used to predict the equilibrium scour depth beneath subsea pipelines, with short computation times and negligible mesh dependency.
机译:当海底管道放在不平坦的海底上时,管道可以具有初始高度,可能会损害其基底稳定性;由于管道周围的流动条件而擦洗可以进一步加剧问题。我们评估了两阶段Eulerian-eulerian OpenFoam求解器,Twophaseulerfoam的能力,就预测在实时床条件下的稳定电流下的不同初始高度下的管道下方的平衡缝探。发现预测与已发表的实验性和数值结果吻合良好;然而,类似于最近涉及另一个两阶段欧拉欧洲模型的研究,预测了冲刷时间尺度。预测的均衡深度被认为随着初始管道高度的增加而减小。还与使用先前经验方程制造的预测的数值结果。迄今最全面的方程表明,与现有数值效果吻合良好。我们得出结论,这种开源求解器Twophaseulerfoam可用于预测海底管道下方的平衡冲刷深度,具有短的计算时间和可忽略的网格依赖性。

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