首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Effect of bidirectional internal flow on fluid–structure interaction dynamics of conveying marine riser model subject to shear current
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Effect of bidirectional internal flow on fluid–structure interaction dynamics of conveying marine riser model subject to shear current

机译:双向内流对剪切力作用下船用立管输送模型流固耦合动力学的影响

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ABSTRACT This article presents a numerical investigation concerning the effect of two kinds of axially progressing internal flows (namely, upward and downward) on fluid–structure interaction (FSI) dynamics about a marine riser model which is subject to external shear current. The CAE technology behind the current research is a proposed FSI solution, which combines structural analysis software with CFD technology together. Efficiency validation for the CFD software was carried out first. It has been proved that the result from numerical simulations agrees well with the observation from relating model test cases in which the fluidity of internal flow is ignorable. After verifying the numerical code accuracy, simulations are conducted to study the vibration response that attributes to the internal progressive flow. It is found that the existence of internal flow does play an important role in determining the vibration mode (/dominant frequency) and the magnitude of instantaneous vibration amplitude. Since asymmetric curvature along the riser span emerges in the case of external shear current, the centrifugal and Coriolis accelerations owing to up- and downward internal progressive flows play different roles in determining the fluid–structure interaction response. The discrepancy between them becomes distinct, when the velocity ratio of internal flow against external shear current is relatively high.
机译:摘要本文提供了一种数值研究,涉及两种轴向前进的内部流动(即向上和向下)对受外部剪切电流作用的船用立管模型的流固耦合(FSI)动力学的影响。当前研究背后的CAE技术是一种提议的FSI解决方案,它将结构分析软件与CFD技术结合在一起。首先进行了CFD软件的效率验证。事实证明,数值模拟结果与内部流动性可忽略的相关模型测试案例的观察结果吻合。在验证了数字代码的准确性之后,进行了模拟研究以研究归因于内部渐进流的振动响应。发现内部流动的存在确实在确定振动模式(/主频率)和瞬时振动幅度的大小中起重要作用。由于在外部剪切电流的作用下,沿立管跨度出现了不对称的曲率,因此由内部向上和向下的内部渐进流引起的离心加速度和科里奥利加速度在确定流固耦合响应中起着不同的作用。当内部流动与外部剪切电流的速度比相对较高时,它们之间的差异变得明显。

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