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1)  pseudo time sub-iteration
伪时间子迭代格式
1.
A fully implicit Lower-Upper-Symmetric-Gauss-Seidel(LU-SGS) with pseudo time sub-iteration and the modified Jameson s central scheme are applied to solve thin layer Navier-Stokes(N-S) equations with laminar hypothesis and Baldwin-Lomax(B-L) model for the vortical flows around delta wings at high angles of attack(AOA).
 采用由伪时间子迭代格式实现的二阶精度LU SGS方法进行时间推进,并以Jameson中心加人工粘性格式进行空间离散,应用层流假设和Baldwin Lomax(B L)模式,求解雷诺平均的薄层Navier Stokes(N S)方程组以模拟细长三角翼大迎角流动。
2)  pseudo time sub-iteration(τ-ts)
伪时间子迭代(τ-ts)
3)  iterative scheme
迭代格式
1.
In this paper,Ishikawa iterative schemes with mixed errors are studied,method of proof and technique are improved.
将Ishikawa型迭代格式的收敛性问题推广到带混合误差的Ishikawa型迭代格式的情形 ,同时所用的证明方法和技巧有所改
2.
By making use of monotone iterative technique,the iterative scheme and existence theorem of positive solution are established for a nonlinear second-order boundary value system.
利用单调迭代方法对一个非线性二阶边值系统建立了正解的迭代格式和存在性定理 。
4)  iteration format
迭代格式
1.
For the problems of one-dimensional and two-dimension iteration, this text compares the convergence and convergence rate of different iteration formats, and provides suggestions to the formation of iteration format.
针对水蒸汽性质计算过程中的一维迭代及二维迭代问题,比较了不同迭代格式的收敛性及收敛速度,并对迭代格式的构造提供了建议。
5)  iterative method
迭代格式
1.
In this paper,an iterative method is given to solve the equations with non-differential terms.
给出了求解带不可微项方程的一种迭代格式,利用优序列技巧,在γ-条件下,给出了该迭代格式的存在性与收敛性定理,并给出了误差估计。
6)  iteration scheme
迭代格式
1.
A iteration scheme of solving zeros of nonlinear functions and its convergence;
求解非线性函数零点的一种迭代格式及其收敛性
2.
The accurate iteration scheme for zero points of m-accretive mappings,introduced by Chidume and Zegeye has been essentially extended to the case of iteration scheme with errors.
本质上将Chidume和Zegeye关于m增生映射零点的精确迭代格式推广为带误差项的形式。
3.
The accurate iteration scheme for zero points of m-accretive mappings introduced by Chidume and Zegeye in 2002 has been essentially extended.
本质上将Chidume和Zegeye于2002年提出的关于m增生映射零点的精确迭代格式推广为带误差项的形式。
补充资料:层层迭迭
1.见"层层迭迭"。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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