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首页> 外文期刊>IEEE Transactions on Vehicular Technology >A Response Spectrum Analysis of Wind Deflection in Railway Overhead Contact Lines Using Pseudo-Excitation Method
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A Response Spectrum Analysis of Wind Deflection in Railway Overhead Contact Lines Using Pseudo-Excitation Method

机译:使用伪励磁法测漏铁路架空接触线风偏转的响应频谱分析

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摘要

The wind deflection of overhead contact lines (OCLs) challenges the stable and safe operation of electrified railways. The steady wind causes the static deflection of the contact line, while the fluctuating wind leads to the OCL buffeting. This paper performs a response spectrum analysis of the wind deflection caused by the combined effects of steady and fluctuating winds. Considering the initial configuration of OCL, an absolute nodal coordinate formulation method is employed to model the OCL. A spatial wind field including the fluctuating wind in three directions is constructed and the aerodynamic forces on the OCL are derived. A nonlinear solution procedure is proposed to include the geometrical nonlinearity and dropper slackness in the evaluation of static wind deflection. The pseudo-excitation method is utilised to evaluate the buffeting response of the OCL with stochastic wind load. The analysis results indicate that the dropper slackness has a significant effect on the vertical static deflection. Under an extreme wind speed of 40 m/s, the contact line is always within the safe working range of pantograph head when only the steady wind load is considered. However, the stochastic wind load causes non-negligible fluctuation of OCL, and the contact line may be outside of the pantograph working range under the same wind speed. Sensitivity analyses on the effects of some key parameters to the OCL buffeting suggest that the increases of damping ratio and the tension class are effective measures to improve the wind-resistance capability of OCL.
机译:架空接触线(OCL)的风偏转挑战电气化铁路的稳定安全操作。稳定的风导致接触线的静偏转,而波动风导致OCL频率。本文执行由稳态和波动风的综合影响引起的风偏转的响应频谱分析。考虑到OCL的初始配置,采用绝对节点坐标配方方法来模拟OCL。构建包括三个方向上的波动风的空间风场,并且衍生OCL上的空气动力。提出了一种非线性解决方案程序,包括在静态风偏转的评估中包括几何非线性和滴管松弛。利用伪激励方法评价OCL与随机风力载荷的缓冲响应。分析结果表明,滴管松弛对垂直静态偏转具有显着影响。在40米/秒的极端风速下,当仅考虑稳定的风负荷时,接触线始终在Pintograph头的安全工作范围内。然而,随机风力负荷导致OCL的不可忽略的波动,并且接触线可以在接触仪工作范围内的相同风速下。敏感性分析了一些关键参数对OCL频率的影响表明,阻尼比的增加和张力等级是改善OCL抗风能力的有效措施。

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