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1)  transport equation with the dispersion term
传质扩散方程
2)  mass diffusion equation
质量扩散方程
3)  diffusion of mass transfer
传质扩散
4)  diffusion equation
扩散方程
1.
Second-order solution of diffusion equation in multiple-scattering media with photon density wave;
多散射介质中光子密度波扩散方程的二阶求解
2.
Finite proximate method with 5 points scheme for two-dimensional diffusion equation;
二维扩散方程的5点格式有限近似解法
3.
Solving diffusion equation with classic Runge-Kutta method;
用经典R-K法求解扩散方程
5)  diffusion equations
扩散方程
1.
A discrete tangential flux on grid edge in nine-point schemes for solving diffusion equations on arbitrary quadrilateral meshes is derived.
基于扩散方程法向流连续的条件,给出离散法向流的构造,导出扭曲网格上九点计算格式中网格边上离散切向流的表达式,从而推导出加权系数的计算公式,适应于各种扭曲的网格。
6)  microscopic diffusion equation
微扩散方程
1.
The dissolution kinetics of L1_2 ordered precipitations (δ'--Al_3Li) in a disordered ma-trix during retrogression heat treatment was investigated on atomic scale using computer simulationsbased on microscopic diffusion equations (Langevin equation) with the discrete format.
基于离散格点形式的微扩散方程(Langevin方程),对Al-Li合金在回归过程中δ-Al_3Li相溶解进行了原子层面计算机模拟,分析了析出相在回归过程中原子图像和序参数的演化,进而探讨了Al-Li合金的回归机制。
2.
The microscopic diffusion equation is based on microscopic phase field theory, which describes the atom clustering and ordering by ordering parameter and the probabilities of finding an atom at a given lattice.
基于微观相场动力学理论建立的微扩散方程,以原子占位几率和序参数描述合金沉淀过程的原子簇聚和有序化。
3.
The nucleation of ordered phase is simulated by microscopic diffusion equation and the assumption of classical nucleation theory is examined.
利用微扩散方程对有序相成核过程进行计算机模拟 ,对经典理论的假设进行验证。
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