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RESPONSE BASED DESIGN METOCEAN CONDITIONS FOR AN FPSO BY THE EXTREMUM SEARCH WITHIN JOINT METOCEAN PDF

机译:联合几何内极值搜索的FPSO基于响应的设计几何条件PDF

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The response based analysis of a floating system aims at the prediction of extreme N-year return period responses by analysing their statistics in site-specific metocean conditions. After the extreme responses have been determined the inverse problem is solved: the most probable design metocean conditions (DMC) should be determined which cause these responses. The most probable DMC associated with a given response can be determined by using the joint probability density function (PDF) of metocean parameters. Mathematically, the most probable DMC is equivalent to a "design point", at which the joint metocean PDF has a conditional maximum. This paper presents a method for finding the most probable DMC by the extremum search. Several numerical examples are presented to demonstrate finding the most probable DMCs for typical responses of an FPSO in North Sea environment, including global motions, wave loads, turret motions and relative wave motions. The most probable DMCs are found by the search process implemented in the space of physical metocean variables, which allows for easy interpretation of the results and exploring the response sensitivity to variability of metocean parameters.
机译:基于响应的浮动系统分析旨在通过分析特定地点的海洋条件下的统计数据来预测极端N年返回期响应。确定极端响应后,解决反问题:应确定引起这些响应的最可能的设计气象条件(DMC)。与给定响应相关的最可能DMC可以通过使用海洋参数的联合概率密度函数(PDF)来确定。从数学上讲,最可能的DMC等效于“设计点”,在该点上,联合气象PDF具有条件最大值。本文提出了一种通过极值搜索找到最可能的DMC的方法。给出了几个数值示例,以说明在北海环境中为FPSO的典型响应找到最可能的DMC,包括整体运动,波浪载荷,炮塔运动和相对波浪运动。通过在物理海冰变量空间中执行的搜索过程可以找到最可能的DMC,从而可以轻松解释结果并探索对海冰参数变化的响应敏感性。

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