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1)  fictitious compress recovery approach
虚拟压缩恢复法
1.
To approximate the disturbing gravity,the fictitious compress recovery approach is used and compared with the approach of point mass.
将改进的虚拟压缩恢复法应用于扰动引力的逼近问题,与点质量法的比较表明,改进的虚拟压缩恢复法和点质量模型对扰动引力的逼近精度和逼近速度相当。
2)  fictitious compress recovery
虚拟压缩恢复
1.
Choosing a sphere K_S which includes the whole earth,under the assumption that EGM holds correct in the region outside the sphere K_S,and based on the "fictitious compress recovery" approach,it could be established a new gravity model,properly called NEGM,which is vali.
设想有一个包含了地球的大球KS,假定EGM在大球的外部成立,则可根据虚拟压缩恢复法求出一种新的重力场模型NEGM,它是对原有重力场模型的进一步精化,适合于整个地球外部空间,从理论上可以解决重力场的“向下延拓”问题。
2.
This paper introduces the fictitious compress recovery approach and a shift equation based on which is given.
简述了虚拟压缩恢复法,并基于该法给出了漂移方程,用以确定大地水准面重力位δW。
3)  fictitious compressrecovery principle
虚拟压缩恢复原理
4)  virtual recovery
虚拟恢复
1.
The right version of data will be found to the client by version time at the virtual recovery time.
本系统的可生存性主要通过对客户端数据进行实时版本存储和版本数据的虚拟恢复来实现。
5)  artificial compressibility method
虚拟压缩方法
1.
The present solver uses a primitive variable formulation that is based on the artificial compressibility method combined with dual time stepping method.
求解程序采用虚拟压缩方法和双时间步的时间推进方案,对流项的差分采用高阶精度的数值差分格式。
2.
The solver is based on an artificial compressibility method with dual-time stepping for time advancing.
虚拟压缩方法通过在连续性方程中加入压强对虚拟时间的偏导数,从而把压力场和速度场耦合起来,解决了不可压缩流的计算问题。
6)  artificial compressibility approach
虚拟压缩方法
1.
The three-dimensional incompressible Navier-Stokes equations are solved by artificial compressibility approach,the flows around two kinds of low-aspect-ratio thin wings for Micro Air Vehicles,flat and cambered,are simulated at low Reynolds number,numerical results agree well with the experimental data.
采用虚拟压缩方法求解三维不可压缩N-S方程,数值模拟了无弯度、有弯度两类微型飞行器低雷诺数小展弦比薄翼的流场,将得到的结果与实验进行了对比,数据间吻合较好。
补充资料:虚拟
1.设想;虚构。
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