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Nonlinear riser-seabed interaction response among touchdown zone of a steel catenary riser in consideration of vortex-induced vibration

机译:考虑涡流诱导的振动,钢结线提升管触地带的非线性立管 - 海底相互作用响应

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Steel catenary riser (SCR) is a preferred solution for deepwater oil and gas exploitation under harsh marine environment. Its riser-seabed interaction (RSI) among touchdown zone (TDZ) in consideration of the vortex-induced vibration (VIV) of sag bend is at present a research frontier in ocean engineering. This paper integrates Randolph-Quiggin model into a published global numerical riser model, to investigate the nonlinear RSI response among TDZ of an SCR with VIV. The adopted numerical model is validated against some published experimental measurements for VIV and RSI respectively. Three combined cases with top-end platform heave motion and VIV are simulated, and the trench development as well as the SCR's response characteristics among TDZ is analyzed. VIV makes the trench develop more smoothly, and the trench length as well as depth turns smaller. The VIV effect on RSI is relatively significant with violent heave excitation, under which the P-z curves present clearer interaction mode transitions. VIV enlarges the maximum bending moment visibly, and makes the sag bend of SCR dominated by higher-order modes, which are both detrimental to the structural safety. The coupling effect between RSI and VIV on the riser's dynamic response needs to be considered for the design of full-scale SCRs.
机译:钢结旋转立管(SCR)是苛刻的海洋环境下深水油和天然气剥削的首选解决方案。考虑到涡旋诱导的凹凸振动(VIV)的触摸区(TDZ)中的Riser-Seabed互动(RSI)目前是海洋工程中的研究前沿。本文将Randolph-Quiggin模型集成到已发布的全局数值提升机模型中,以研究TDZ与VIV的TDZ之间的非线性RSI响应。采用的数值模型分别验证了用于VIV和RSI的一些公布的实验测量。分析了三个具有顶端平台升降运动和VIV的组合案例,分析了TDZ之间的沟槽开发以及SCR的响应特性。 VIV使沟槽更顺畅地发展,沟槽长度以及深度变小。 RSI对RSI的VIV效应与剧烈的升降激励相对显着,在该激发下,P-Z曲线呈现了更清晰的交互模式转换。 VIV可明显地扩大最大弯曲力矩,并使SCR的凹凸弯曲由高阶模式占据,这既有害结构安全。 RSI和VIV之间的耦合效果在提升机上的动态响应中需要考虑为全尺寸SCR设计。

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    《Oceanographic Literature Review》 |2021年第5期|1165-1165|共1页
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