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内孤立波作用下顶部张紧式立管动力特性
引用本文:林忠义,尤云祥,曲 衍,肖 越,范 模.内孤立波作用下顶部张紧式立管动力特性[J].海洋工程,2012,30(2):20-25.
作者姓名:林忠义  尤云祥  曲 衍  肖 越  范 模
作者单位:1. 嘉兴南洋职业技术学院 浙江嘉兴314003
2. 上海交通大学海洋工程国家重点实验室,上海,200240
3. 中海石油研究中心 北京100027
基金项目:中海石油研究中心综合科研课题,国家863计划项目
摘    要:基于内孤立波mKdV理论,采用考虑内流的细长杆动力学方程,结合改进的Morison公式,研究两层流体中内孤立波与顶张立管的相互作用问题。针对东沙群岛南部海域附近某实测内孤立波特征参数,计算分析在该内孤立波作用下某顶张立管的内孤立波载荷与运动响应,以及立管横截面弯矩及其应力的变化特性。研究表明,内孤立波不仅会对顶张立管产生突发性的冲击载荷以及大幅度水平变形,而且还会使其横截面弯矩及其应力显著增大。因此在深海立管的设计与应用中,内孤立波的影响是不可忽视的。

关 键 词:两层流体  内孤立波  顶张立管  动力响应

Dynamic response of the top tension riser in internal solitary waves
LIN Zhong-yi,YOU Yun-xiang,QU Yan,XIAO Yue and FAN Mo.Dynamic response of the top tension riser in internal solitary waves[J].Ocean Engineering,2012,30(2):20-25.
Authors:LIN Zhong-yi  YOU Yun-xiang  QU Yan  XIAO Yue and FAN Mo
Institution:1.School of Jiaxing Nanyang Profession and Technology,Jiaxing 314003,China;2.State Key Laboratory of Ocean Enginering,Shanghai Jiao Tong University,Shanghai 200240,China;3.CNOOC Research Center,Beijing 100027,China)
Abstract:Based on the mKdV theory of internal solitary waves in a two-layer fluid,a theoretical model for analyzing the interaction of internal solitary waves with the top tension risers is presented by use of the riser dynamic equation based on the slender beam theory considering the effect of the internal flowing fluid combining with the modified Morison formula.The observational data near the Dongsha Island are used as the characteristic parameters of internal solitary waves,the characteristics of the hydrodynamic load and dynamic response as well as the torque and stress of the cross section for the riser due to such an internal solitary wave are computed and analyzed.Results show that internal solitary waves will give rise to sudden impact load and large deformation,as well as remarkable torque and stress of the cross section for the riser.Therefore,the influence of internal solitary waves on the dynamic behaviours of deep-sea risers can not be neglected in their designs and applications.
Keywords:two-layer fluid  internal solitary wave  top tension riser  dynamic response
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