• The numerical result implies that the high-accuracy upwind scheme has the advantage of high order accuracy and good stability.

    计算结果表明高精度迎风格式具有精度稳定性特点

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  • To solve it numerically, we use a moving mesh method, two upwind difference discretizations (simple upwind scheme and midpoint upwind scheme) are applied.

    为了对数值求解采用移动网格方法,使用了两种迎风差分格式(一般迎风格式中点迎风格式)。

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  • The hyperbolic equations were formulated by artificial compressibility method with the convective terms discreted using a third-order upwind scheme based on Roe's approximate Riemann solver.

    不可压粘性绕流的求解采用了人工压缩性方法其中对流的离散应用三阶迎风格式。

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  • Equations of transport model of leachate for porous media and double media are given. Generalized upwind scheme is used to solve the transport model of leachate and to eliminate numerical dispersion.

    本文通过对淋滤液运移模型研究,给出多孔介质双重介质淋滤液运移模型的定问题,采用广义迎风格式求解淋滤液运移模型,消除数值弥散。

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  • This paper is on an application of the upwind difference scheme proposed by the author in a previous paper.

    工作作者提出迎风格式计算轴对称喷管的定常超音流动问题的一个尝试。

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  • At the same time, based on the result, it is concluded that the upwind finite difference scheme for solving the one dimensional heat transfer equation for SG is stable.

    同时根据这个结果分析得到求解蒸汽发生器传热方程逆风有限差分格式稳定

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  • The numerical simulation of this model was analyzed through first-order upwind difference scheme and QUICK scheme.

    通过迎风格式及QUICK格式,求解出模型数值解。

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  • Discusses some properties of the second upwind difference scheme for the convection-diffusion equation and explains certain questions in the computation of natural convection problems.

    讨论了对流扩散方程第二逆风差分格式一些性质说明了自然对流计算中的某些问题

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  • In this paper, an implicit-explicit upwind difference scheme for the first order linear hyperbolic equation is proposed using explicit scheme and implicit scheme alternately.

    本文采用显格式与隐格式交替使用方法,针对线性双曲方程提出了一种隐-迎风差分格式。

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  • The convection term is discretized with upwind-central difference scheme, while the pressure equation is solved by SOR.

    对流迎风—中心差分格式模拟,压力方程SOR法迭代求解

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  • A high order accurate upwind compact difference scheme for N-S equations is developed.

    利用高精度差分格式求解了压缩n - S方程球头热流问题。

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  • The functional value on the interface of the control volume is calculated using the QUICK scheme with upwind style.

    控制容积界面函数采用具有迎风倾向QUICK格式。

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  • The N-S equation's convection term and dissipation term are discretized using the third-order upwind compact scheme and the fourth-order central compact scheme, respectively.

    方程对流扩散项分别采用迎风格式中心紧致格式离散

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  • The first is a convective problem, and solved by the central-upwind deference scheme;

    对流过程采用逆风-中心差分格式求解

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  • Upwind flux vector splitting scheme for chemical non-equilibrium flows on hybrid meshes and its parallelization;

    提出一套较为通用的,完全自动化非结构混合网格生成方法。

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  • Upwind flux vector splitting scheme for chemical non-equilibrium flows on hybrid meshes and its parallelization;

    提出一套较为通用的,完全自动化非结构混合网格生成方法。

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