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1.
On Study of the Calculation Methods for Hydrodynamic Performance of the Voith-Schneider and Kobold Rotor;
摆线式和蹼板式水轮机水动力性能计算方法研究
2.
Study on the Hydrodynamic Characteristics and Experimental Design of Variable Vector Propeller;
全方向推进器的水动力性能计算与试验设计研究
3.
Application and comparison of different turbulence models in the computation of a propeller's hydrodynamic performance
不同湍流模型在螺旋桨水动力性能计算中的应用与比较
4.
Aerodynamic Analysis of a Horizontal Axis Wind Turbine
水平轴风轮空气动力性能的分析计算
5.
Research on Computational Model for the Aerodynamic Performance of Blade for Horizontal Axis Wind Turbine;
水平轴风力机叶片气动性能计算模型研究
6.
Numerical Simulation for Aerodynamical Analysis and Performance Prediction of HAWT Rotor;
水平轴风力机风轮气动数值模拟及性能计算
7.
3-D numerical simulation of aerodynamic performance of horizontal-axis wind turbine
水平轴风力机气动性能的三维数值计算
8.
Bend Stream-tube Method of Calculating the Hydrodynamic Performance of Cycloidal Propeller and Rotor;
计算摆线推进器和水轮机水动力性能的弯曲流管法
9.
Numerical Calculation on the Performance of the Interaction between Propeller and Rudder with Additional Thrust Fin;
螺旋桨与舵附推力鳍相互干扰水动力性能数值计算
10.
Hydrostatic Computation of Ship Based on Matlab;
基于Matlab的船舶静水力性能数值计算
11.
Computational Fluid Dynamics Analysis of Effects of Number of Pump Blades on Water-jet Propeller Performance
叶片数对喷水推进器性能影响的计算流体动力学分析
12.
Effect of hydrodynamic pressure on performance-based design of a deepwater bridge
动水压力对深水桥梁性能设计的影响
13.
Numerical Calculation on Hydrodynamic Characteristics for the Amphibious Vehicle Based on Computational Fluid Dynamics
基于计算流体动力学的两栖车辆水动力特性数值计算
14.
Numerical simulation of submarine hull pressures and hydrodynamic forces at incidence
数值计算有漂角时潜艇表面压力与水动力特性
15.
Thermodynamic Performance Checking Calculation and Dynamic Research of Supercharged Boiler;
增压锅炉热力性能校核计算及动态性能研究
16.
Study on Frequency-Domain Data Fusion of Dynamic Thermal Performance Computation;
动态热力性能计算的频域信息融合算法研究
17.
This method can be used in the design of the spring to predict its transversal stiffness, thus providing parameters for the prediction of dynamic performance.
采用此方法可在设计阶段预测它的水平向刚度,为动力学性能计算提供参数。
18.
An Analytical Approach to Optimum Design and Peak Performance Prediction for Horizontal Axis Wind Turbines
水平轴风力机优化设计与最大性能估算