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DYNAMIC RESPONSE OF A FLOATING CYLINDER SUBJECTED TO COUPLED WAVE AND WIND LOADING

机译:浮动耦合波和风装的浮动圆柱的动态响应

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The broad objective of the research presented herein is to analyze dynamical interactions in offshore structures under combined wind and wave loads for enhanced power delivery and reliability of hybrid wind-wave generation systems. As an offshore structure representative, a model for an inclined floating cylinder at finite depth is developed employing linear wave theory coupled with wind-induced effects. Although detailed wave models have often been incorporated while studying the dynamics of such cylinders, wind-induced effects have been mostly modeled as an axial drag term that affects the drift of the structure along the wind direction. In this article, the effects of not only wind-induced drag, but also lift and oscillations on the structure (i.e. the floating inclined cylinder) are studied. Further, the effects of vortex shedding are considered. Cross-flow principle is used to calculate the wind loads on the cylinder.
机译:本文提出的研究的广泛目的是分析近海结构下的动力学相互作用,用于增强混合风波发电系统的电力输送和可靠性。作为近海结构代表,开发了有限深度倾斜浮动圆柱的模型,采用与风引起的效果相结合的线性波理论。尽管在研究这种气缸的动态的同时经常被纳入详细的波模型,但是风引起的效果主要被建模为轴向拖动术语,其影响结构沿风向的结构漂移。在本文中,研究了不仅有风力引起的阻力的影响,而且还研究了结构(即浮倾斜圆筒)上的升力和振荡。此外,考虑了涡旋脱落的影响。交叉流原理用于计算气缸上的风力载荷。

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