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一型小水线面双体船的水动力性能与结构设计
引用本文:吴有生,倪其军,谢伟,周沙亚,尤国红,田超,张焰,吴强.一型小水线面双体船的水动力性能与结构设计[J].船舶力学,2008,12(3):388-400.
作者姓名:吴有生  倪其军  谢伟  周沙亚  尤国红  田超  张焰  吴强
作者单位:中国船舶科学研究中心,江苏,无锡,214082;中国舰船研究设计中心,武汉,430072;上海交通大学民用建筑与海洋工程学院,上海,200030;大连科学测试与控制技术研究所,辽宁,大连,116024;中国船舶重工集团公司,北京,100037
摘    要:简要介绍了中国船舶重工集团公司(CSIS)建立和发展的一种小水线面双体船(SWATH)优化设计工程技术系统.主要包括SWATH船型的概念设计、主尺度与线型优化、有效功率预报、纵向运动稳定性校验及稳定鳍设计、耐波性预报、结构载荷评估、波浪中的船体结构动、静响应分析等有关设计、预报与评估的系统方法.并以一型1500吨级小水线面双体型海洋调查船设计和评估为例对有关设计方法进行了说明和验证,在该船设计中,采用线性和非线性三维水弹性理论来预报载荷与评估在波浪中航行船体的结构安全性,同时在中国船舶科学研究中心(CSSRC)的拖曳水池与耐波性水池中进行了阻力与自航、耐波性与操纵性、波浪载荷等船模拖曳及自航试验.文中还给出了该船有关优化设计及模型试验结果.

关 键 词:小水线面双体船  优化设计  结构设计  水动力性能  水弹性分析  非线性响应
文章编号:1007-7294(2008)03-0388-13
修稿时间:2008年4月20日

Hydrodynamic Performance and Structural Design of a SWATH Ship
WU You-sheng,NI Qi-jun,XIE Wei,ZHOU Sa-ya,YOU Guo-hong,TIAN Chao,ZHANG Yan,WU Qiang.Hydrodynamic Performance and Structural Design of a SWATH Ship[J].Journal of Ship Mechanics,2008,12(3):388-400.
Authors:WU You-sheng  NI Qi-jun  XIE Wei  ZHOU Sa-ya  YOU Guo-hong  TIAN Chao  ZHANG Yan  WU Qiang
Abstract:The practical design technique of SWATH ships developed by China Shipbuilding Industry Corporation is described. This includes the systematic approaches of conceptual design, optimization of shipform and principal dimensions, predictions of powering performance, seakeeping behavior and motion stability, assessment of structural loads, static and dynamic strengths of a SWATH ship traveling in random waves. The design and evaluation of an ocean-survey SWATH ship with the displacement of 1 500t is illustrated as an example.In the design process, the linear and non-linear three-dimensional hydroelasticity theories were employed to predict the loads and to assess the structural safety of the vessel traveling in rough seas.The resistance, seakeeping and maneuvering behaviors and the wave loads of the designed vessel were verified by a set of restricted and free-running model tests carried out in towing tank and wave basin at CSSRC. These are briefly described in this paper.
Keywords:SWATH ship  design optimization  structural design  hydrodynamic performance  hydroelastic analysis  non-linear responses
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