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matlab_sph
- This an matlab source code for smoothed particle hydrodynamic simulaiton. It include matlab routines and input data.-This is an matlab source code for smoothed particle hydrodynamic simulaiton. It include matlab routines and input data.
wave
- 计算有义波高的程序 船舶水动力学方面 是比较专业的程序-Significant wave height calculation procedure for ship hydrodynamic aspects of the program more professional
DSTO-TR-1329
- The Calculation of Hydrodynamic Coefficients for Underwater Vehicles
HC
- hydrodynamic cavitation simulation and explanation with power point file
Bearingplotscustom
- Hydrodynamic bearing calculation program
Reynolds-model-with-film-and-load
- 可以求解雷洛方程的膜厚和载荷方程,读者可以稍微修改相关参数就可以应用到自己的公式和相关数学模型中-Reynolds model to develop the film-thickness and hydrodynamic load.
xishu
- 应用切片理论计算船舶水动力系数,以一条船分为20站为例进行计算-Application slice theoretical calculations ship hydrodynamic coefficients to a boat into 20 stations as an example calculation
Frictioncalculation
- friction force calculation in hydrodynamic journal bearing
AxialPistonPump
- 轴向柱塞泵马达流体动力学模型matlab代码,可研究压力流量脉动和配流窗口优化问题-Axial piston pump motor hydrodynamic model matlab code
mariner
- 整体型船舶MATLAB建模,各种水动力系数都已经通过船模试验获得。-Overall vessels MATLAB modeling, various hydrodynamic coefficients have been obtained by the ship model experiment.
fifth_assignment2
- 计算流体力学中计算NS方程部分项目的处理,采用有效差分方法-NS equation calculation processing part of the project hydrodynamic calculated using the effective difference method
fourth_assignment1
- 采用有限差分法计算给定初始条件和边界条件的流体力学方程-Using the finite difference method given initial and boundary conditions of hydrodynamic equations
fourth_assignment3
- 采用有限差分法解决近似假定下简化的流体力学方程,计算流体力学范畴-Finite difference approximation method to solve the hydrodynamic equations under the assumption that the simplified
marineravoidcollisionnew
- 通过不同载荷分析船舶运动方程的不同情况,包含较多的水动力导数,同时考虑了波浪谱密度函数的影响,采用了最新的od45方程求解6自由度船舶运动方程(The ship motion equation is analyzed under different loads, including more hydrodynamic derivatives, and considering the influence of wave spectral density function, the latest o
Hydrodynamic analysis capture
- folder = 'C:\Users\erinb\Documents\NTNU\Teaching\EWEM_H14\ProjectDescr iption\xxSRA_models\OC4semi\Decay6'; % folder % where the analysis was carried out bodyNum = 1; % body number motion = 6; %1 for surge, 3 for heave, 5 for pitch, 6 for yaw FF