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AN ITERATIVE UPDATING METHOD FOR DYNAMIC RESPONSES OF A FLOATING PLATFORM UNDER ACTION OF INTERNAL SOLITARY WAVES

机译:内部孤立波作用下浮动平台动态响应的迭代更新方法

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The internal solitary waves, have properties of two-way s-hear profile, significant velocity and acceleration, etc., which threaten the safety of deepwater floating systems in South China Sea(SCS), for the frequent occurrence and the high intensity of internal solitary waves in SCS. In recent years, offshore oil companies of China encountered many strong internal waves during its deepwater oil and gas exploration and development activities in South China Sea. However, the action mechanism of ISWs to floating structures is not understood clearly, and the internal solitary waves are classified as ocean current in API RP 2SK (3rd edition), therefore engineers ignore the velocity variance and long period "wave" characteristics in the design of floating structures. Furthermore, the offshore floating structures is oscillating under the action of environmental forces, due to the horizontal velocity of the platform is comparative to that of ISWs, thus fluid-body coupling is significant that one cannot analyse it by simply adding a specified ISW force time history to the floater. This paper proposes a new iterative updating method for ISW loading calculation considering the fluid-body coupling, and applied this method to a semi MODU, numerical study shows the iteration is efficient and the result is more reasonable compared to conventional method, and it is found that the maximal offset decreases significantly.
机译:内部孤立波,具有双向S听力的性能,显着的速度和加速度等,这威胁到南海(SCS)深水浮动系统的安全性,频繁发生和内部高强度SCS中的孤独波浪。近年来,中国海上石油公司在南海的深水石油和天然气勘探开发活动期间遇到了许多强大的内部海浪。然而,ISWS对浮动结构的动作机制也没有清楚地理解,内部孤立波被归类为API RP 2SK(第3版)的海洋电流,因此工程师忽略了设计中的速度方差和长期“波”特性浮动结构。此外,由于平台的水平速度与ISW的水平速度相比,近海浮动结构在环境力的作用下振荡,因此流体 - 主体耦合是通过简单地添加指定的ISW强制时间来分析它的流体体耦合浮游生的历史。本文提出了一种新的迭代更新方法,用于考虑流体 - 主体耦合,并将这种方法应用于半导体,数值研究表明迭代是有效的,与传统方法相比,结果更合理,并且找到了最大偏移量显着降低。

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