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基于失效模式的深海玻纤增强柔性管截面设计 被引量:2

Cross Section Design of Glass Fiber Reinforced Flexible Pipe in Deep Sea based on Failure Mode
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摘要 针对深海油气输送所使用的钢制管道存在耐腐蚀性差、质量大以及柔性小的不足,设计了具有耐腐蚀性强、质量轻、强度高、柔性好等优点的热塑性玻璃纤维(玻纤)增强聚乙烯柔性管,基于海深500 m油井油气输送用玻纤增强柔性管道中的抗压和抗拉增强层截面结构设计要求,通过有限元方法进行了多角度玻纤缠绕设计。结合DNVGL–RP–F119规范和美国船级社相关规范,首先根据柔性管受载工况进行了抗压层和抗拉层缠绕角度的设计,然后通过对抗压层、抗拉层在30 MPa内压、5 MPa外压和588 000 N拉力3种典型工况下的厚度试算以及90 MPa爆破压力校核,最终获得能够满足柔性管技术设计指标要求的增强层厚度为11.6 mm(90°玻纤缠绕抗压层8 mm,+30°玻纤缠绕抗拉层1.8 mm,–30°玻纤缠绕抗拉层1.8 mm)。与传统柔性管使用的单一缠绕角度设计方法相比,所设计的玻纤增强柔性管不需要经过多个工况强度校核进行大量缠绕角度和缠绕厚度试算以确定多种工况下的增强层最优缠绕角度和最少缠绕层数,因此计算量小、设计效率高。 In order to overcome defects of poor corrosion resistance,large weight and weak flexibility of steel pipelines which are applied to oil and gas transmission in deep sea,the thermoplastic glass fiber reinforced polythene flexible pipes with features of high corrosion resistance,light weight and high strength and good flexibility were designed.Aiming at designing requirements of cross section structure of reinforcement layer including compressive and tensile reinforced layer of glass fiber reinforced flexible pipes which are utilized to transmit oil and gas in deep sea,such as500meter deep,the multi-angle glass fiber winding design was carried out based on finite element method.In combination with DNVGL-RP-F119specifications and American Classification Society specifications,winding angle design was firstly carried out on the compressive layer and tensile layer according to flexible pipe loading conditions.By calculating the thickness of the compressive layer and the tensile layer in three typical working conditions of30MPa internal pressure,5MPa external pressure and588000N tensile force,and checking the blasting pressure90MPa,it is obtained that the thickness of the reinforcement layer which meets the design index requirements of flexible tube technology is11.6mm(the thickness of90°fiber winding compressive layer is8mm,the thickness of+30°or-30°fiber winding tensile layer is each1.8mm).Compared with the traditional design method of single winding angle used in traditional flexible pipes,the design of the glass fiber reinforced flexible pipe does not need to calculating the winding angle and winding thickness largely through checking the intensity of multiple working conditions for determining the optimal winding angle and the minimum number of winding layers in various working conditions,therefore,it has small calculation amount and high design efficiency.
作者 潘俊 颜廷俊 李鹏 丛日峰 Pan Jun;Yan Tingjun;Li Peng;Cong Rifeng(School of Mechanical and Electrical Engineering, Beijing University of Chemical Technology, Beijing 100029, China;Shandong Guan Tong Pipe Industry Co. Ltd., Weihai 264400, China)
出处 《工程塑料应用》 CAS CSCD 北大核心 2017年第11期60-65,共6页 Engineering Plastics Application
基金 国家工信部项目--海洋工程用玻纤增强柔性管研制与应用示范
关键词 深海 玻璃纤维增强聚乙烯柔性管 多角度缠绕 截面结构设计 有限元 deep sea glass fiber reinforced polythene flexible pipe multi-angle winding cross structure design finite element
作者简介 联系人:颜廷俊,教授,研究方向为结构力学分析
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  • 1赵冬岩.挠性软管在渤海海底管道的应用[J].中国海上油气(工程),1994,6(4):24-26. 被引量:8
  • 2张钧.海上采油工程手册[M].北京:石油工业出版社,2001:1-46.
  • 3API RP 17B, Recommended practice for flexible pipe [S].
  • 4Flexible Pipe [EB/OL]. [2010-09-20]. http://www. technip. con/cn/our-business/subsea/flexible-pipe.
  • 5Company History [EB/OL]. [2010-01-28]. http:// www. wellstream. com/about/index. php.
  • 6NKT Technical Brochure[EB/OL]. [2011-09-20]. http://www. nktflexibles. com/en/Products + and + Solutions/Products+and+Solutions. htm.
  • 7flexible pipe News [EB/OL]. [2011-09-20]. http:// www. subseaworld. com/search = flexible+ pipe.
  • 8Michael Chun-Yung Niu. Composite Airframe Structures, Hong Kong Conmilit Press LTD. Sep., 1993.
  • 9张少实,庄茁.复合材料与粘弹性力学[M].机械工业出版社,2005.
  • 10Ronald F. Gibson. Principles of Composite Material Mechanics, McGraw-Hill, Inc.1994.

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