侧风作用下不同工况下高速列车气动特性分析

K. Ye, R. Li
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引用次数: 1

摘要

建立了高速列车在直线和不同半径曲线轨道上的数值计算模型。作者计算了作用在三段(首列、中列和后列)上的横向力(力矩)。同时,分析了有遮挡风墙和无遮挡风墙条件下列车侧力系数和滚动力矩系数随列车速度和横向风速的变化趋势。结果表明:在直线铁路和曲线铁路中,横向荷载系数随横向风速的增大而增大,随列车速度的增大而减小;有遮挡风墙的三段列车的横向力(弯矩)与无遮挡风墙的横向力(弯矩)相反。侧风条件下的交通安全主要集中在有遮挡风墙的后车和无遮挡风墙的首车。在相同的列车速度和横向风速下,曲线铁路列车的侧力和滚动力矩大于直线铁路列车。横向荷载系数绝对值随着曲线半径的增大逐渐减小,其关系基本为线性关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Analysis of Aerodynamic Characteristics of the High-Speed Train in Different Railway Conditions under Crosswinds
The numerical calculation models of the high-speed train in the straight and different radius curve railway are established. Author calculated transverse forces (moments) acting on the three sections (first train, middle train and rear train). At the same time, under with the shelter wind wall and without the wall, the change trends of side forces coefficients and rolling moments coefficients of trains with the train speed and the transverse wind speed are analyzed. Results show that, in the straight railway and curve railway, transverse loads coefficients increase with the increase of the transverse wind speed and decrease with the increase of the train speed. The transverse forces (moments) of the three sections of the train with the shelter wind wall are opposite to that without the wall. Traffic safety under crosswinds focuses on the rear train with the shelter wind wall and focuses on the first train without the wall. At the same train speed and transverse wind speed, side forces and rolling moments of trains in curve railway is greater than that of trains in straight railway. Absolute values of transverse loads coefficients decreased gradually with the increase of the radius of the curve, and their relationship basically is the linear relation.
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