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An investigation into the mechanical damping characteristics of catenary contact wires and their effect on aerodynamic galloping instability

机译:悬链接触线的机械阻尼特性及其对气动驰豫不稳定性影响的研究

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摘要

Measurement of the damped oscillation of a section of the UK East Coast Main Line (ECML) catenary/contact wire system was undertaken, and the natural frequency and mechanical damping were found to be 1.4Hz and 0.05 respectively. This information was used to assess the effect of increasing the mechanical damping ratio on the susceptibility of the system to an aerodynamic galloping instability. The section of line tested was known to gallop at wind speeds of approximately 40 mile/h, and theoretical and experimental work verified this. A friction damper arm was designed and three units were fitted to the section of line affected. The introduction of increased mechanical damping was found to raise the mechanical damping coefficient of the line to between 0.095 and 0.18, and the mathematical analysis produced a theoretical wind speed for galloping oscillation of between 75 and 141 mile/h respectively. For over a year since the units were fitted, no problems with galloping instability have been observed.
机译:对英国东海岸干线(ECML)悬链线/接触线系统的一部分的阻尼振荡进行了测量,发现固有频率和机械阻尼分别为1.4Hz和0.05。此信息用于评估增加机械阻尼比对系统对气动疾驰不稳定性的敏感性的影响。已知测试线段在大约40英里/小时的风速下驰gall,理论和实验工作证实了这一点。设计了一个摩擦阻尼器臂,并将三个单元安装到受影响的管线部分。发现增加机械阻尼的引入将线路的机械阻尼系数提高到0.095至0.18之间,并且数学分析得出的奔腾振动的理论风速分别在75至141英里/小时之间。自装置安装以来的一年多时间内,没有观察到奔腾不稳定性的问题。

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