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浅窄航道非线性兴波阻力数值计算
引用本文:宋永军,邹早建,徐海祥,高高. 浅窄航道非线性兴波阻力数值计算[J]. 船舶工程, 2005, 27(4): 33-36
作者姓名:宋永军  邹早建  徐海祥  高高
作者单位:1. 武汉理工大学,交通学院,武汉,430063
2. 上海交通大学,船舶海洋与建筑工程学院,上海,200030
基金项目:教育部重点科技项目和国家自然科学基金项目(10272085)
摘    要:应用Rankine面元法计算船舶在浅窄航道中作匀速直航运动时的非线性兴波阻力.基于势流理论,在船体表面、自由面以及岸壁分布Rankine源来表达流场速度势,利用迭代方法满足非线性自由面边界条件,采用映像法满足水底边界条件,采用网格错位法满足辐射条件.以Wigley数学船型为例进行计算,通过改变航速和航道宽度参数,得到相应的兴波阻力.通过分析不同航速下航道宽度变化对兴波阻力的影响,得到了一些有意义的结论.

关 键 词:船舶 兴波阻力 浅窄航道 Rankine源 数值计算
文章编号:1000-6982(2005)04-0033-04
收稿时间:2004-11-22
修稿时间:2005-01-13

Numerical Calculation of Nonlinear Wave-making Resistance in Restricted Water
SONG Yong-jun,ZOU Zao-jian,XU Hai-xiang,Gao Gao. Numerical Calculation of Nonlinear Wave-making Resistance in Restricted Water[J]. Ship Engineering, 2005, 27(4): 33-36
Authors:SONG Yong-jun  ZOU Zao-jian  XU Hai-xiang  Gao Gao
Abstract:A Rankine Panel Method is developed for calculating the nonlinear wave-making resistance of a ship moving forward with a constant speed in restricted water. On the basis of potential theory, the disturbance velocity potential is expressed by a Rankine source distribution on the body surface, free surface and bank sides. The nonlinear free surface condition is satisfied in an iteration manner, whereas the boundary condition on the bottom is satisfied by the method of images, and the radiation condition is satisfied by the numerical technology of staggered grids. Numerical calculations are conducted for a mathematical Wigley ship and results are obtained for the ship at different speeds and widths of waterway. The effect of the width on the resistance is analyzed and some meaningful conclusions are drawn.
Keywords:ship   wave-making resistance   restricted water   Rankine source   numerical calculation
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