Newly Constructed Subway on Over-Track Bridge Safety and Vibration Reduction Measure

IF 1.5 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
Yuan Xu, Hui Li, Jue Hou, Liming Zhu, Lingkun Chen
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Abstract

Primarily generated at the interface between the wheel and the rail, railroad vibrations then propagate through the supporting soil. If these vibrations reach nearby bridges and buildings, they amplify the vibration nuisance and cause ground noise, which has detrimental effects on nearby residents, sensitive equipment, and historic structures. By analyzing measured data from metro vibration field vibration experiments, this article attempts to contribute to the body of knowledge on environmental vibration propagation patterns by offering insightful conclusions. Before analyzing the deformation response of the metro jet system (MJS) vibration isolation piles to the structure and the ground, we investigated the effect of MJS vibration isolation piles in the ground of the existing subway tunnel structure on the control of vibration of the proximate structure and conducted dynamic tests on the vibration of bridges without vibration isolation measures caused by operating subway trains. The tests determined that the acceleration of the bridge’s lateral vibration exceeded the code limit; one of the contributing factors was that the bridge’s structure had already sustained damage. The utilization of MJS isolation piles was also discovered to safeguard the extant bridge pile foundations. The paper presents an innovation in the form of economically viable vibration mitigation strategies that were implemented subsequent to the identification that the lateral vibration acceleration of the preexisting bridge surpassed the prescribed code standards. Considerable insight is gained regarding the design and implementation of vibration control systems for structures situated near caverns, encompassing deep foundation works.
轨道桥上新建地铁的安全和减震措施
铁路振动主要产生于车轮和铁轨之间的界面,然后通过支撑土壤传播。如果这些振动传到附近的桥梁和建筑物,就会放大振动扰动并造成地面噪声,从而对附近居民、敏感设备和历史建筑造成不利影响。通过分析地铁振动现场振动实验的测量数据,本文试图通过提供有见地的结论,为环境振动传播模式的知识体系做出贡献。在分析地铁喷射系统(MJS)隔振桩对结构和地面的变形响应之前,我们研究了现有地铁隧道结构地面中的 MJS 隔振桩对近邻结构振动控制的影响,并对未采取隔振措施的桥梁因地铁列车运行引起的振动进行了动态测试。测试结果表明,桥梁的横向振动加速度超过了规范限值,其中一个原因是桥梁结构已经受到损坏。此外,还发现使用 MJS 隔离桩可以保护现存的桥梁桩基。本文以经济可行的减震策略的形式介绍了一项创新,该策略是在发现原有桥梁的横向振动加速度超过规定的规范标准后实施的。本文对岩洞附近结构(包括深基坑工程)振动控制系统的设计和实施进行了深入探讨。
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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来源期刊
Advances in Civil Engineering
Advances in Civil Engineering Engineering-Civil and Structural Engineering
CiteScore
4.00
自引率
5.60%
发文量
612
审稿时长
15 weeks
期刊介绍: Advances in Civil Engineering publishes papers in all areas of civil engineering. The journal welcomes submissions across a range of disciplines, and publishes both theoretical and practical studies. Contributions from academia and from industry are equally encouraged. Subject areas include (but are by no means limited to): -Structural mechanics and engineering- Structural design and construction management- Structural analysis and computational mechanics- Construction technology and implementation- Construction materials design and engineering- Highway and transport engineering- Bridge and tunnel engineering- Municipal and urban engineering- Coastal, harbour and offshore engineering-- Geotechnical and earthquake engineering Engineering for water, waste, energy, and environmental applications- Hydraulic engineering and fluid mechanics- Surveying, monitoring, and control systems in construction- Health and safety in a civil engineering setting. Advances in Civil Engineering also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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