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Computational Model and Numerical Simulation for Submerged Mooring Monitoring Platform’s Dynamical Response

机译:水下系泊监控平台动力响应的计算模型和数值模拟

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摘要

Computational model and numerical simulation for submerged mooring monitoring platform were formulated aimed at the dynamical response by the action of flow force, which based on Hopkinson impact load theory, taken into account the catenoid effect of mooring cable and revised the difference of tension and tangential direction action force by equivalent modulus of elasticity. Solved the equation by hydraulics theory and structural mechanics theory of oceaneering, studied the response of buoy on flow force. The validity of model were checked and the results were in good agreement; the result show the buoy will engender biggish heave and swaying displacement, but the swaying displacement got stable quickly and the heaven displacement cause vibration for the vortex-induced action by the flow.Key words: Submerged mooring monitoring platform / Fluid-so1id coupling / Calculation model / Numerical simulation
机译:针对跳水作用下的动力响应,基于Hopkinson冲击载荷理论,考虑了系缆索的悬链效应,修正了拉力和切线方向的差异,针对水下系泊监控平台建立了计算模型和数值模拟。等效弹性模量的作用力。用海洋力学的水力学理论和结构力学理论求解方程,研究了浮标对流动力的响应。检查模型的有效性,结果吻合良好;结果表明,浮标会产生较大的升沉和摇摆位移,但摇摆位移迅速稳定,天体位移引起流动引起的涡流作用振动。关键词:水下系泊监测平台/流固耦合/计算模型/数值模拟

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