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Experimental study on ground vibration attenuation induced by heavy freight wagons on a railway viaduct

机译:铁路高架桥重型货车诱导地面振动衰减的实验研究

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Studies on ground vibration induced by railway operation usually focused on wagons running on ground or abutments, while vibration from a railway viaduct is often assumed to be much lower. Based on field test in the vicinity of a heavy freight railway viaduct above Shenshan Village, China, the attenuation of ground vibration induced by heavy freight wagons for coal transportation is studied. And evaluation is conducted on an adjacent house to access vibration disturbance to residents near a viaduct. Propagation and attenuation of vibration induced from viaduct are studied by analyzing peak particle velocity and spectra of ground and house vibration in the vicinity of the viaduct. Vibration signals were collected for 34 trains with different train speed and wagon weight. In all monitored situations, vertical vibration is generally larger than horizontal vibration. The relationship between distance to pier and PPV is revealed by a power function modified from Sadovskii formula with high correlation factor. Analysis also indicates a much lower dominant frequency induced by low-speed trains with or without acceleration than normal speed trains. A dramatic amplitude reduction is shown within frequency between 25 Hz and 35 Hz when train speed is reduced. Empty wagons also show smaller amplitude in most frequency bands, with significant difference in 15-25 Hz. Analysis on the house also shows larger vibration in vertical than horizontal, and vibration amplitude in some frequency bands has exceeded relative criteria. Analysis result shows significant ground and house vibration effect form a viaduct, and piers should be considered as vibration sources for ground and houses in future studies.
机译:通过铁路操作引起的地面振动的研究通常集中在地面或支座上运行的货车,而通常假设从铁路高架桥的振动较低。基于中国沉山村的重型货运铁路高度附近的现场测试,研究了煤炭运输重货车辆诱导的地面振动衰减。并且评估在邻近的房屋上进行,以获得对高架桥附近的居民的振动障碍。通过分析高架桥附近的地面和房屋振动的峰值粒子速度和地面的峰值粒子速度和光谱来研究高架桥诱导的振动的传播和衰减。收集振动信号,以34列火车,具有不同的列车速度和货车重量。在所有受监测的情况下,垂直振动通常大于水平振动。通过高相关因子从Sadovskii公式修改的功率功能揭示了到码头和PPV之间的关系。分析还表明,由低速列车引起的显着频率远低于正常速度列车的低速列车。减少了剧烈幅度减小,在频率降低时,在25Hz和35赫兹之间示出。空无盖货车也在大多数频段中显示较小的振幅,差异差异为15-25Hz。房屋的分析还显示垂直振动比水平更大,并且一些频带中的振动幅度已经超过相对标准。分析结果表明,显着的地面和房屋振动效果形成了高架桥,并且在未来的研究中应将码头视为地面和房屋的振动源。

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