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- The elliptic differential equation method was adopted for two-dimensional (2-D) and three-dimensional (3-D) BFC grid generation. This method can generate stable grid and is suitable to an arbitrary complicated domain. 本文采用椭圆型微分方程法对二维和三维区域进行了BFC网格生成,该方法生成的网格稳定,适用于任意区域。
- The non-existence of radially non-increasing positive solutions is derived for a system of quasi-linear elliptic differential equations first of all. 摘要首先得到一类拟线性椭圆型方程组正解的先验界估计和衰减性质,从而推出该方程组的径向非增正对称解的不存在性结果。
- Research of variation principle about boundary value problem of second order elliptic differential equation 二阶椭圆型方程边值问题的变分原理研究
- BEM Algorithm for Solving the Parameter Identification Problem in Two Order Elliptic Differential Equation 二阶椭圆型微分方程参数识别问题的边界元方法
- THE POSTERIORI ERROR ESTIMATE OF SPECTRAL METHOD FOR SECOND ORDER ELLIPTIC DIFFERENTIAL EQUATION OF VARIABLE COEFFICIENT 二阶变系数椭圆型微分方程谱方法的后验误差估计
- Kernel functions and elliptic differential equations in mathematical physics 和函数与椭圆型微分方程
- elliptic differential equation 椭圆型微分方程,椭圆微分方程
- A boundary variation equation for boundary value problems of a kind of four order elliptic differential equations 一类四阶椭圆型微分方程边值问题的边界变分方程
- Ordinary differential equation arnold v. I. 常微分方程。
- Do you know how to solve the differential equation? 你知道如何解这个微分方程吗?
- Oscillation Theorems of Elliptic Differential Equations by Methods of the Sequence of Functions 椭圆型微分方程振动性的函数序列方法
- Oscillation comparison theorems of solutions for second order nonlinear elliptic differential equations 二阶非线性椭圆型微分方程解的振动比较定理
- Application of Finite Volume Method in Second Order Elliptic Differential Equations 二阶椭圆型方程的有限体积解法
- Boundary Problems of Second- order Elliptic Differential Equations with a Turning Point and Resonance Phenomenon 具有转点的奇摄动椭圆方程边值问题与共振
- The Dirichlet Problem for a Class of Quasi-Linear Elliptic Partial Differential Equation with the Discontinuous Boundary Value. 一类拟线性椭园型方程带有间断边值的Dirichlet问题
- Domain Oscillation Criteria for Second Order Nonlinear Elliptic Differential Equations 二阶非线性椭圆型微分方程振动的区域准则
- Newton's second law can be expressed as a differential equation. 牛顿第二定律可表达成微分方程。
- Numerical Approximation of Interface Problems for Elliptic Differential Equations 椭圆型方程内边界问题的数值逼近
- In this paper we consider solving two-dimensional elliptic partial differential equation (PDE) via orthogonal wavelet and multigrid methods. 摘要考虑二维椭圆型偏微分方程的数值解。
- Numerical solution of differential equations. 微分方程的数值解。