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Nonlinear calculation of arbitrarily shaped supercavitating hydrofoils near a free surface

机译:自由表面附近任意形状的超空化翼型的非线性计算

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摘要

A nonlinear exact solution to the problem of two-dimensional gravity-free incompressible potential flow around an arbitrarily shaped supercavitating hydrofoil near a free surface is obtained. A combination of Newton’s methodudwith a functional iterative procedure is used to solve the nonlinear integral and algebraic equations of this problem. Fast and stable convergence results by starting the iteration with a readily chosen initial solution. Some representative numerical computations are made for practical hydrofoils having both generally shaped camber and leading-edge thickness distributions. The force coefficients, pressure distribution and free-streamline shapes of the cavity are calculated for each case with an execution time on an IBM 370-158 of 200-530s dependingudupon the initial trial solution.
机译:获得了围绕自由表面附近任意形状的超空化水翼周围的二维无重力不可压缩势流问题的非线性精确解。牛顿方法 ud与函数迭代程序的组合用于解决此问题的非线性积分方程和代数方程。通过使用易于选择的初始解决方案开始迭代,可以实现快速稳定的收敛。对具有一般形状的弧度和前沿厚度分布的实用水翼进行一些代表性的数值计算。在每种情况下,根据初始试验解决方案,在IBM 370-158上的执行时间为200-530s,计算出腔体的力系数,压力分布和自由流线形状。

著录项

  • 作者

    Furuya Okitsugu;

  • 作者单位
  • 年度 1975
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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