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二维扰动的英文

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"二维扰动"怎么读用"二维扰动"造句

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  • two-dimensional disturbance

例句与用法

  • Prediction of hydrodynamic pressure . the thesis presents a practical engineering method to predict the hydrodynamic pressure on instantaneous wet ship surface
    关于水动压力预报:本文提出了基于二维扰动流场频域稳态解的一种预报船体瞬时湿表面压力分布的工程实用方法。
  • The initial solutions of two - dimensional harmonic waves are given by landau expansion and the mean - flow - distortion is calculated by the approximation equation . furthermore , we employ iteration method and “ predictor - corrector approach ” to solve the nonlinear equations in order to implement the marching procedure , and the result of nonlinear two - dimensional stability is obtained precisely . the effect of pressure gradient is also studied here
    文中所发展的数值方法,包括采用landau展开给出二维谐波的初始解、模拟流场的均流变形以及采用迭代和预估校正方法实现非线性方程的求解和推进,得到了二维扰动的非平行非线性稳定性的精确结果。
  • After analyzing and comparing nonlinear evolution of r - t instability in two dimension with that in three dimension , it is the conclusions given that three - dimensional ( 3d ) disturbance grows rapider than two - dimensional ( 2d ) one , its timely evolution factor being 1 . 41 to 1 . 26 time as large as 2d ' s , in r - t instability linearly developing regime , and with time increasing , three - dimensional wave shape gradually deviates from 2d ' s
    通过比较二维和三维r - t不稳定性的非线性发展,得出结论: r - t不稳定的线性发展阶段,三维扰动比对应的二维扰动增长要快,它的时间增长因子大致为二维的1 . 41到1 . 26倍。
  • The major work is as follows : solution of two dimensional radiation or diffraction fluid field . this thesis extends multipole expansion method to adapt to disturbed fluid fields of 2d floating bodies with asymmetric forms , which is applied with symmetric forms originally . and given the solution of potential velocity and hydrodynamic pressure of radiation and diffraction fluid fields , which is incited by a 2d arbitrary form , actual application field of the multipole expansion method has been enlarged
    关于二维扰动流场的求解:将通常仅适宜求解具有对称形状二维物体扰动流场的多极展开法(保角变换方法)扩展至非对称形状二维物体,给出了任意形状二维物体的辐射和绕射流场的速度势及水动压力的频域解,进一步扩大了多极展开法的实际应用范围。
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