船体分析表面

S. Krivoshapko, V. N. Ivanov
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引用次数: 1

摘要

船体表面最佳形状的选择是船舶建筑师和设计人员的主要问题之一。形式的选择是基于经验公式或设计者的直觉。本文给出了一种确定三个主截面船体理论形状的显式代数方程的方法,该方程与设计水线、船舯截面和主对接线重合。主要横截面中的线的形式是从预先取得的条件中选择的。这些表面被称为流体动力学。给出了船体三个主要横截面的一种方法,即构造了九个水动力表面。为了便于计算机建模,所有代数方程都被转换为参数形式。在他们的帮助下,所有提议引入的九个水面都被可视化了。通过改变曲面方程中包含的常数,即修正船体三个主要几何参数的形式,可以为第一种方法选择最合理的船体曲面形状。此外,可以从代数曲面的不同片段开始规划平行的中体,或者将船的船头和船尾末端结合起来,但具有相同的船舯截面。本文仅介绍了理论船体外形设计中的几何问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical surfaces for ship hulls
The choice of optimal shape of ship hull surface is one of the main problems of ship architects and designs. A choice of the form is based on empirical formulae or on intuition of designers. In the article a method of determination of explicit algebraic equations of theoretical shape of ship hull with three main cross-sections given in advance and coinciding with the design waterline, the midship section, and with the main buttock line is given. The forms of the lines in the main cross-sections are chosen from conditions taken in advance. These surfaces are called hydrodynamic. A method is illustrated for three threes of main cross-sections of the ship hulls, i.e. nine hydrodynamic surfaces were constructed. All algebraic equations were converted to parametrical form for comfort of computer modelling. With their help, all nine ship surfaces proposed for the introduction were visualized. Having changed constants containing in the surface equations, i.e. correcting the forms of three main geometric parameters of ship hull, one can select the most rational shape of hull surface for the first approach. Further, it is possible to begin planning parallel middle bodies or to combine bow and stern extremities of a ship from different fragments of algebraic surfaces but with the same midship sections. In a paper, only geometrical problems of design of theoretical hull shape are described.
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