中国海洋平台2024,Vol.39Issue(4) :79-85.DOI:10.12226/j.issn.1001-4500.2024.04.20240411

南海深水FPSO模块支墩设计与分析

Design and Analysis of Deep Water FPSO Module Stool in the South China Sea

荆海东 王璞 康哲
中国海洋平台2024,Vol.39Issue(4) :79-85.DOI:10.12226/j.issn.1001-4500.2024.04.20240411

南海深水FPSO模块支墩设计与分析

Design and Analysis of Deep Water FPSO Module Stool in the South China Sea

荆海东 1王璞 2康哲1
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作者信息

  • 1. 中国船舶及海洋工程设计研究院,上海 200011
  • 2. 中国海洋工程装备技术发展有限公司,上海 200011
  • 折叠

摘要

针对中国南海海况恶劣,浮式生产储卸油装置(Floating Production Storage and Offloading,FPSO)在南海服役多年后,少数支墩由于建造工艺出现裂纹问题,以南海某深水FPSO为研究对象,对常用箱式支墩形式进行改进优化设计.运用有限元方法对箱式模块支墩和改进后的丰字形模块支墩与十字交叉带裙边支墩进行评估,对不同支墩形式进行强度分析、变形分析和疲劳分析,并对不同支墩的工艺进行综合对比,结合工程实践和有限元计算,给出支墩推荐设计方案.结果表明,优化后的十字交叉带裙边支墩结构强度和疲劳均优于箱式支墩,同时还具有便于加工组装的特点,最终选定十字交叉带裙边支墩方案.

Abstract

Aimed at the problem that the South China Sea is under harsh conditions,after years of service,cracks are found on the module stools of Floating Production Storage and Offloading(FPSO)due to construction technology troubles,taken a deep-water FPSO in the South China Sea as the research object,the box-type form of the commonly used FPSO module stool is improved and optimized.The box-type module stool,the improved Fengzi module stool and the cross belt skirt stool are evaluated by the finite element method.The strength analysis,deformation analysis and fatigue analysis of different stool forms are carried out.The construction technologies of different stools are comprehensively compared.Combined with engineering practice and finite element calculation,the recommended module stool is given.The results show that the optimized cross belt skirt stool is of better performance in strength and fatigue,it also has the characteristics of easy processing and assembly,and the scheme of cross belt skirt stool is selected.

关键词

FPSO/模块支墩/优化设计/强度评估/疲劳评估/施工工艺

Key words

Floating Production Storage and Offloading(FPSO)/module stool/optimal design/strength evaluation/fatigue evaluation/construction technology

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基金项目

工信部高技术船舶科研项目(E-0819C002)

出版年

2024
中国海洋平台
中国船舶工业集团公司第十一研究所

中国海洋平台

CSTPCD
影响因子:0.271
ISSN:1001-4500
参考文献量8
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