首页> 外文会议>ASME joint rail conference >VIBRATION CONTROL DESIGN FOR LIGHT RAIL TRANSIT: A SINGLE PROJECT WITH THE FULL RAINBOW OF VIBRATION CONTROL FEATURES - CASE STUDY
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VIBRATION CONTROL DESIGN FOR LIGHT RAIL TRANSIT: A SINGLE PROJECT WITH THE FULL RAINBOW OF VIBRATION CONTROL FEATURES - CASE STUDY

机译:轻轨交通的振动控制设计:一个具有完整振动控制特征的彩虹桥项目-案例研究

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Because of the recent emphasis on rail transit infrastructure expansion and rebuilding in the United States, there is concern about the potential adverse vibration effects on existing activities that are sensitive to vibration and ground-borne-noise located in proximity to new or reactivated rail system rights-of-way. A Southern California at-grade/elevated LRT system that is currently under construction required the design and specification of extensive vibration control features. The final design needed to include the entire range of vibration mitigation tools presented in the Federal Transit Administration guidance manual. Designs and Contract Specifications included simple single-layer ballast mats; multi-layer ballast mats; high-resilience direct fixation fasteners; potential wheel-squeal solutions; low-vibration special trackwork; continuously-supported, street-running, floating slab track; and discrete, steel-helical-spring-supported floating slab track. It is noteworthy that the discrete steel-spring-supported FST is the first use of this vibration control approach in an at-grade rail system in the United States. This paper will discuss the overall approach, data analysis, solutions development, and the final designs prepared for this project and how this information may be beneficial to other projects with similar issues.
机译:由于最近对美国的轨道交通基础设施进行扩展和重建的关注,人们担心对现有活动的潜在不利振动影响,这些活动对靠近新的或重新激活的铁路系统权利的振动和地面噪声敏感的方式。目前正在建设中的南加州地上/高架轻轨系统需要对广泛的振动控制功能进行设计和规范。最终设计需要包括《联邦交通管理局》指导手册中介绍的所有减振工具。设计和合同规范包括简单的单层压载垫;多层压载垫;高弹性直接固定紧固件;潜在的车轮尖叫声解决方案;低振动的特殊履带;连续支撑,沿街运行的浮动平板轨道;和离散的,由钢螺旋弹簧支撑的浮动平板轨道。值得注意的是,离散钢弹簧支撑的FST是这种振动控制方法在美国平地铁路系统中的首次使用。本文将讨论为该项目准备的总体方法,数据分析,解决方案开发和最终设计,以及这些信息如何使有类似问题的其他项目受益。

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    《ASME joint rail conference》|2015年|V001T01A003.1-V001T01A003.15|共15页
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    Rob Greene;

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