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作 者:卢志飞[1,2] 林晓波[1,2] 郑新龙[1,2] 吕安强[3] 李世强[1,2] 张杰[3] LU Zhi-fei LIN Xiao-bo ZHENG Xin-long Lii An-qiang LI ShJ-qiang ZHANG Jie(State Gricl Zhoushan Electric Power Supply Company of Zhejiang Power Corporation, Zhoushan 316021, China Zhejiang Zhoushan Marine Power Research Institute Co. ,Ltd. , Zhoushan 316021, China Department of Electronic and Communication Engineering, North China Electric Power University, Baoding 071003, China)
机构地区:[1]国网浙江省电力公司舟山供电公司,浙江舟山316021 [2]浙江舟山海洋输电研究院有限公司,浙江舟山316021 [3]华北电力大学电子与通信工程系,河北保定071003
出 处:《光通信研究》2016年第3期29-32,共4页Study on Optical Communications
基 金:国家自然科学基金资助项目(51407074);河北省自然科学基金资助项目(E2015502053);中央高校基本科研业务费专项资金资助项目(2015ZD21)
摘 要:三芯光纤复合海底电缆(简称为"海缆")在运输、敷设和运行的过程中经常会产生拉伸的机械行为,对其进行拉伸建模仿真,可获得实体试验难以得到的应力、应变等数据。文章通过建立海缆拉伸有限元模型,模拟了海缆的拉伸过程。首先根据海缆拉伸的力学特点对结构进行简化,得到三芯海缆的几何模型;然后对其施加约束及速度载荷,控制沙漏能,仿真轴向拉伸过程;最后对数据进行有效提取和处理,获得海缆的应力与应变,为研究海缆的力学性能、判断海缆工作状态提供了参考。Three-core optical fiber composite submarine power cable is often stretched in the process of transportation, installa- tion and operation. The stress and strain data can be obtained by the simulation of stretching modeling, which is difficult to be obtained in the entity experiment. In this paper, the finite element model of the submarine cable is established, which is used to simulate the stretching process. We first simplify the structure of the submarine power cable according to the mechanical characteristics of stretching. The constraint, speed loads and hourglass control are then imposed to simulate the axial stretching process. Finally, the stress and strain data of the finite element model is extracted and processed to obtain the stress and strain of the submarine cable. The results provide reference for the study of mechanical properties and operating condition judgement of the submarine power cable.
分 类 号:TN818[电子电信—信息与通信工程]
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