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The measurement of train noise: a case study in northern Italy

机译:火车噪声的测量:以意大利北部为例

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This paper analyses the interactions between vehicles, infrastructure and environment for raii traffic. It identifies variables having a significant influence on sound levels, defines a standard procedure for measuring noise, and develops a database for setting up and calibrating train noise models. A pilot study looks at two railway lines passing through Vercelli, a medium sized town in the north-west of Italy. Four main conclusions were drawn. First, in certain conditions, variables that normally influence noise production can be neglected (e.g. when surrounding environmental conditions are constant, different types of train do not cause a significant variation in noise level). Secondly, when diesel trains are travelling at less than 70 km/h, a speed change of 30―40 km/h significantly affects the maximum noise level (Lmax). However, for electrified lines, when speed is below 80 km/h, a change of 20―30 km/h does not cause significant variations in Lmax. Thirdly, for diesel trains transiting at low speeds―e.g. near stations―noise emissions are strongly affected by acceleration/deceleration. Lastly, an approach based on 'sites types' is able to produce useful results because site configuration and the presence of building significantly affect Lmax. High buildings along the line can increase noise levels and may nullify the advantages derived from technological advance in the vehicles.
机译:本文分析了用于交通运输的车辆,基础设施和环境之间的相互作用。它识别对声音水平有重大影响的变量,定义用于测量噪声的标准程序,并开发用于建立和校准火车噪声模型的数据库。一项试点研究着眼于穿过意大利西北部中型城镇韦尔切利的两条铁路线。得出了四个主要结论。首先,在某些条件下,可以忽略通常会影响噪声产生的变量(例如,当周围环境条件恒定时,不同类型的火车不会引起噪声水平的明显变化)。其次,当柴油火车以低于70 km / h的速度行驶时,30-40 km / h的速度变化会显着影响最大噪音水平(Lmax)。但是,对于电气化线路,当速度低于80 km / h时,变化20-30 km / h不会引起Lmax的明显变化。第三,对于低速过境的柴油火车-例如车站附近-加/减速强烈影响噪音排放。最后,基于“站点类型”的方法能够产生有用的结果,因为站点配置和建筑物的存在会显着影响Lmax。沿线的高层建筑会增加噪音水平,并且可能会使车辆技术进步所带来的优势无效。

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