1、

The CSCM-S algorithm proposed by Lombard et al is very attractivefor multidimensional Euler and Navier-Stokes equations.

由Lombard等人提出的CSCM -S 算法是求解Euler及Navier-Stokes方程的高效率方法.

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2、

Navier-Stokes Equations. Physical Parameters . Dynamic Similarity.

5纳维埃 - 司 托克斯 (N-S)方程式,物理参数,动力相似.

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3、

Navier | Stokes equations are derived by the Chapman | Enskog method from the BGK Boltzmann equation.

利用ChapmanEnskog方法,从BGK型Boltzmann方程推导出NavierStokes方程.

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4、

The paper describes a numerical study on roll damping of ship by solving the Navier-Stokes equation.

本文运用求解N -S 方程的手法研究船体的横摇阻尼问题.

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5、

Finally, by means of numerical simulation, the Navier-Stokes equations for dimension axial-symmetry coordinate are solved.

最后,本文求解了变物性时二维轴对称坐标下的 Navier -Stokes方程, 通过数值模拟, 发现热物性变化对气体的流动换热过程有很大的影响.

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6、

The Quasi-Conforming Element ( QCE ) technique is introduced of constructing penalty finite element of Navier-Stokes Problem.

给出构造 Navier -Stokes问题罚有限单元的拟协调元法.

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7、

Detached-Eddy Simulation combines the strong points of Reynolds-averaged Navier-Stokes and Large Eddy Simulation approaches.

DES方法 结合了 RANS (Reynolds-averagedNavier-Stokes)和LES( LargeEddySimulationapproaches)的优点.

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8、

The basic differential equations of orthotropic sandwich with initial deflection and solved by Navier dual-trigonometric series.

方程组的求解采用改进的纳维叶双三角级数法,得到了临界屈曲载荷的计算公式.

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9、

The governing equations are the simplified Navier-Stokes equations, and the two layer Baldwin-Lomax turbulent model is adopted.

出发方程是三维简化N-S方程, 用 Baldwin -Lomax湍流模型.

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10、

Baldwin-Lomax turbulence model is implemented in Navier-Stokes flow solver .

湍流计算采用了Baldwin -Lonax 代数紊流模型.

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11、

Calculations and analyses are made on surface pressure, velocity distribution as well as aerodynamic resistance, using Computational Fluids Dynamics software CFX, 3D viscous incompressible Reynolds averaged Navier stokes equations and turbulence model k ε double equation.

运用流体动力学数值计算软件CFX,采用三维粘性不可压缩雷诺平均应力方程和k-ε双方程湍流模型,对200km/h电动旅客列车进行了表面压力、速度分布及空气阻力的计算分析。

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12、

The complete boundary integral formulation for generalized Stokes equation and its application to the solution of Navier-Stokes equation

广义Stokes方程的完全边界积分表示式及其在求解N-S方程中的应用

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13、

The Extended System of Simple Bifurcation Point of the Navier-Stokes Equations

Navier-Stokes方程简单分歧点的扩充系统

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14、

Numerical results of a 3D viscous flow in an exhaust casing of a low pressure steam turbine were obtained with the 3D Navier Stokes solver Fine/ Turbo.

运用三维粘性流场数值模拟软件(Fine/Turbo)对一个低压蒸汽透平排气缸内的复杂流动进行数值模拟,计算结果与已有的实验数据进行了对比。

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15、

Flow field of centrifugal pump ( Pump flow passage includes suction pipe, impeller and volute casing.) was obtained by solving the Reynolds average Navier-Stokes equation.

通过求解包括进水管、叶轮、泵体等过流部件在内的水泵流道内的三维稳定雷诺平均Navier-Stokes方程,获得水泵内部的流场分布特征。

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16、

The Quasi-Conforming Element ( QCE) technique is introduced of constructing penalty finite element of Navier-Stokes Problem.

给出构造Navier-Stokes问题罚有限单元的拟协调元法。

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17、

This paper constructs the objective function of genetic arithmetic by using the solution elastic sheet of Navier, and thereby identifies the position of focal load that acts on a plane sheet.

由弹性薄板的Navier解构造出遗传算法中的目标函数,实现对作用在平面薄板上的集中荷载位置识别。

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18、

Finite element method for unsegregated Navier-Stokes equations of incompressible viscous fluid flow-I theory

不可压粘性流动N-S耦合方程的有限元解法&I理论

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19、

The IPSA model solves the Navier-Stokes equations of each phase with the interphase interactions between two phases of water and air, including the interphase drag forces, interphase lift forces, interphase pressure and virtual mass forces.

IPSA模型对每一相求解N-S方程,并考虑水-气体两相间的相间相互作用,包括相间阻力、相间升力、相间压力和虚质量力。

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