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FPSO 船舶的卸载作业双变量极值响应统计

Offloading operation bivariate extreme response statistics for FPSO vessel.

机构信息

Shanghai Ocean University, Shanghai, China.

Jiangsu University of Science and Technology, Zhenjiang, China.

出版信息

Sci Rep. 2023 Mar 22;13(1):4695. doi: 10.1038/s41598-023-31533-8.

Abstract

The Floating Production Storage and Offloading unit (FPSO) is an offshore unit producing and storing crude oil prior to tanker transport. An important design concern is an accurate prediction of risky dynamic hawser tensions during FPSO offloading operations. Bivariate extreme hawser tension contours are important for selecting proper design values. This paper employed the AQWA hydrodynamic software to analyze vessel hydrodynamic wave loads dynamic response, acting on FPSO vessels under realistic sea state conditions. This paper presents an efficient method for estimating FPSO bivariate response statistics based on numerical simulations validated by various experiments. The bivariate Average Conditional Exceedance Rate (ACER2D) method offers an accurate bivariate extreme value probability distribution and return period contours estimation, utilizing available data efficiently. The two-dimensional probability contours, corresponding to low probability return periods, are easily obtained by the ACER2D method. The performance of the presented method has shown that the ACER2D method provides an efficient and accurate prediction of extreme return period contours. The suggested approach may be used for FPSO vessel design, minimizing potential FPSO hawser damage. Bivariate contours yield bivariate design points, as opposed to a pair of uncoupled univariate design points with the same return period as currently adopted in the industry.

摘要

浮式生产储卸油装置(FPSO)是一种在油轮运输之前生产和储存原油的海上装置。一个重要的设计关注点是准确预测 FPSO 卸载作业过程中危险的动态缆绳张力。双变量极端缆绳张力等高线对于选择合适的设计值非常重要。本文采用 AQWA 水动力软件分析了在实际海况条件下,FPSO 船舶的船体水动力波浪载荷动态响应。本文提出了一种基于数值模拟的有效方法,该方法通过各种实验进行了验证,可以估算 FPSO 的双变量响应统计数据。双变量平均条件超越率(ACER2D)方法提供了一种准确的双变量极值概率分布和重现期等高线估计,可有效利用现有数据。ACER2D 方法可以轻松获得对应低概率重现期的二维概率等高线。所提出方法的性能表明,ACER2D 方法能够有效地准确预测极值重现期等高线。建议的方法可用于 FPSO 船舶设计,最大限度地减少潜在的 FPSO 缆绳损坏。双变量等高线产生双变量设计点,而不是行业目前采用的具有相同重现期的一对非耦合单变量设计点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b3f/10033654/459dc06acb96/41598_2023_31533_Fig1_HTML.jpg

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