1) Rankine-Hugoiniot relation
Rankine-Hugoiniot关系
2) generalized Rankine-Hugoniot relation
广义Rankine-Hugoniot关系
1.
By using the generalized characteristic method and the generalized Rankine-Hugoniot relation which is a system of ordinary equations,unique solution which includes delta-shock waves and vacuum is constructed.
利用广义特征分析的方法和广义Rankine-Hugoniot关系,该关系是常微分方程组,一个包含狄拉克激波和真空的整体解被构造性地得到。
2.
Due to the introduction of a suitable generalized Rankine-Hugoniot relation,delta shock gets a well depiction from velocity,location and weight.
delta波由广义Rankine-Hugoniot关系式的提出,并对delta波从速度,位置和权上分别给出了精确的描述,并且给出了delta波出现的熵条件。
3) Rankine source
Rankine源
1.
Solving ship viscous flow with wave influence by using Rankine source and combined RANSFS method;
采用Rankine源、RANSFS组合方法求解计及波影响的船舶粘性绕流问题
2.
Solution to wave resistance to trimanan using-Rankine source method of Dawson type;
Rankine源Dawson型方法求解三体船兴波阻力
3.
Numerical calculation research on wave-making resistance based on Rankine source method
基于Rankine源法的兴波阻力数值计算研究
4) Rankine vortex
Rankine涡
1.
The internal flow was assumed to be like the Rankine vortex which was confirmed by the simulation data.
文中采用雷诺应力模型(RSM)对涡流二极管泵内部流场进行三维数值模拟,阐述涡流二极管内部流场及高阻产生机理,将内部流动近似为Rankine涡并进行验证,分析了切向入口压力变化对流动特性的影响,结果表明:入口操作压力超过一特定限度后中心区域将出现较大的回流现象,这将有助于提高涡流二极管性能。
5) Rankine body
Rankine体
6) Gerstner-Rankine model
Gerstner-Rankine模型
1.
The main methods of modeling and rendering of ocean wave were analyzed,and then a new simulation method of ocean wave is presented based on Gerstner-Rankine model with the idea of probability statistics.
该方法基于Gerstner-Rankine模型,引入概率统计思想,建立包括波浪折射在内的海浪模型,并采用基于立方体映射的方法实时计算海洋表面纹理,生成了真实感较强的海浪效果,再现了海天一体化场景。
补充资料:经济关系(见生产关系)
经济关系(见生产关系)
economical relation
1 ingji gU口nxj经济关系(eeonomieal relation)系。见生产关
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