使用 STAR-CCM+ 软件研究横风条件下转向架的空气动力性能

Yong-Su Jin, Xiaoli Chen
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摘要

简介:STAR-CCM+ 是一款采用连续介质力学数值技术的 CFD 软件,是热力学和流体力学分析的工具。STAR-CCM+扩展了曲面处理功能,如曲面包裹、曲面重网格、体积网格生成等。随着列车速度的提高,空气动力学现象变得更加突出,高速列车在横风环境下的空气动力学现象也变得更加复杂。目标:转向架是高速列车的重要组成部分。研究在强风环境中运行的三组列车的空气动力性能具有重要意义。建立模型,分析了列车在 12 级横风条件下以 350km/h 速度运行时,车体和转向架的表面压力分布特性,以及每节车厢和转向架的空气动力和空气动力扭矩分布特性。结果:研究结果表明,车体和转向架的表面压力、空气动力和空气动力力矩随风速的变化规律。结论:车体迎风面压力随风速增加呈线性增加,车顶和背风面压力随风速增加呈线性减小。
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Using STAR-CCM+ Software in Aerodynamic Performance of Bogies under Crosswind Conditions
INTRODUCTION: STAR-CCM+ is a CFD software that uses continuum mechanics numerical techniques and is a tool for thermodynamic and fluid dynamics analysis. STAR-CCM+has expanded the functions of surface treatment, such as surface wrapper, surface remesh, and volume mesh generation.With the increase of train speed, the aerodynamic phenomena become more prominent, and the aerodynamic phenomena of high-speed trains in crosswind environment become more complicated. OBJECTIVES: Bogie is an important part of high-speed train. It is of great significance to study the aerodynamic performance Three groups of trains operating in a strong wind environment are modeled, and the surface pressure distribution characteristics of the car body and bogie, as well as the aerodynamic and aerodynamic torque distribution characteristics of each car and bogie, are analyzed when the train operates at 350km/h under a Class 12 crosswind condition. RESULTS: The results of the study show the variation rules of surface pressure, aerodynamic force and aerodynamic moment of the car body and bogie with wind speed. CONCLUSION: The windward surface pressure of the vehicle body increases linearly with the increase of wind speed, and the surface pressure of the roof and leeward side decreases linearly with the increase of wind speed.
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