Study on stiffness matching strategy of longitudinal sleeper and fastener to reduce tunnel wall vibration

Kuang He, Yuanpeng He, Yuyang Yao, Jian Han, Xinbiao Xiao, Maoru Chi
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Abstract

With the increase of the running time of the subway system, long-term use will lead to the reduction of damping, the change of the operating state of the wheels and the track, and the effect of vibration damping measures will gradually weaken. In order to maintain a low level of environmental vibration in vibration sensitive areas, the reconstruction of some existing lines with high level vibration is imminent. In order to solve this problem, this paper focuses on the reconstruction of the existing line of longitudinal sleeper track, which is commonly used in the middle and high level vibration reduction measure in the subway. Because of the high cost of reconstruction of the slab and its lower part, this paper tries to realize the reconstruction of the existing longitudinal sleeper track by changing the fastener system. In this paper, the environmental vibration prediction model of longitudinal sleeper track is established by using the theory of infinite long period structure and the 2.5-dimensional finite element and boundary element (2.5D FE-BE) environmental vibration prediction model. The validity of the numerical model is determined by comparing the field experiment with the numerical simulation. On the basis of the above, the stiffness matching of longitudinal sleeper and fastener is explored by using the verified numerical model. The reasons for the poor vibration reduction effect of the existing longitudinal sleeper matching floating rail fastener (low stiffness) are analyzed. And the matching strategy of the supporting stiffness for vibration reduction of longitudinal sleeper and fastener are summarized.
减少隧道壁振动的纵向枕木和扣件刚度匹配策略研究
随着地铁系统运行时间的增加,长期使用会导致减振效果降低,车轮和轨道的运行状态发生变化,减振措施的效果会逐渐减弱。为了使振动敏感区域的环境振动保持在较低水平,对部分振动水平较高的既有线路进行改造迫在眉睫。为了解决这一问题,本文重点研究了地铁中高位减振措施中常用的纵向轨枕既有线的改造问题。由于板及其下部的改造成本较高,本文尝试通过改变扣件系统来实现对既有纵向轨枕轨道的改造。本文利用无限长周期结构理论和 2.5 维有限元与边界元(2.5D FE-BE)环境振动预测模型,建立了纵向轨枕轨道的环境振动预测模型。通过对比现场实验和数值模拟,确定了数值模型的有效性。在此基础上,利用经过验证的数值模型探讨了纵向枕木和紧固件的刚度匹配问题。分析了现有纵枕匹配浮轨扣件减振效果差(刚度低)的原因。并总结了纵枕和扣件减振支撑刚度的匹配策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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