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转塔式锚泊系统的动力分析
引用本文:季春群,J.E.W.Wichers.转塔式锚泊系统的动力分析[J].上海交通大学学报,1999,33(3):368-373.
作者姓名:季春群  J.E.W.Wichers
作者单位:1. 上海交通大学海洋工程国家重点实验室,上海,200030
2. Maritime Research Institute Netherlands
摘    要:采用时域分析方法计算转塔式锚泊系统的动力响应问题,并对系泊在水深350m的常规的转塔式锚泊系统进行了分析研究.计算结果与响应模型试验进行了比较,两者吻合较好.在此基础上,对系泊在水深400m和1200m的常规及具有浮筒的转塔式锚泊系统在各种环境条件作用下的运动和受力进行了分析研究,提出了对深海转塔式锚泊系统应注意的问题,这对深海石油开采装置的研究具有一定的实用意义

关 键 词:转塔式锚泊  动力响应  浮式生产系统
修稿时间:1998-03-04

Dynamics Response Analysis of Turret Mooring System
JI Chun-qun,J.E.W.Wichers.Dynamics Response Analysis of Turret Mooring System[J].Journal of Shanghai Jiaotong University,1999,33(3):368-373.
Authors:JI Chun-qun  JEWWichers
Abstract:As a numerical tool, a computer program validated by a model test based on the fully integrated dynamics of turret moored F(P)SO systems was developed and applied to deep water. The computer program with a conventional mooring system in 350 m water depth was shown. The results of the computations agree well with the results of the model tests. Based on it, the computations of the tanker moored in 400 m and 1 200 m water depth with a conventional system with and without spring buoys were investigated. By varying the extreme metocean parameters the understanding of and the insight in the reliability and integrity in mooring system can be improved.
Keywords:turret mooring  dynamics response  floating production system  
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