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比萨市区铁路噪声和振动引起的烦恼评估。

Annoyance evaluation due to overall railway noise and vibration in Pisa urban areas.

机构信息

IPCF, CNR, Via G. Moruzzi, 1 Pisa, 56127 Pisa, Italy; IFC, CNR, Via G. Moruzzi, 1 Pisa, 56127 Pisa, Italy.

University of Pisa, E. Fermi Physics Department, Largo Bruno Pontecorvo 3, 56127 Pisa, Italy.

出版信息

Sci Total Environ. 2016 Oct 15;568:1315-1325. doi: 10.1016/j.scitotenv.2015.11.071. Epub 2016 Jan 8.

Abstract

The noise impact of the whole railway infrastructure was characterized in the urban environment of Pisa, Italy. The ordinary train transits were considered, nevertheless it was given particular attention also to the noise sources referable to railway operations like manoeuvring, loading and unloading, truck movements, braking, squeals and whistles. These kinds of noise are usually neglected in the noise modelling and are hereafter called "unconventional noises". The characteristics of the railway infrastructure and the receptors' distribution guided the measuring point selection and led to a survey with a sample of 119 people ranging between the ages of 35 and 70 and residents in the area for at least 5 years. The differences between the ordinary noise modelling and the measured noise, including the unconventional ones, were investigated. Dose-effect relationships for %HA and measured or simulated railways noise were calculated and compared with others in literature. The last paragraph of this paper is dedicated to the exposure to railway vibration and its relation with noise exposure. The results show the limitations of traditional noise mapping for railway epidemiological studies based exclusively on ordinary transits and confirm the role of vibrations as enhancing factor for disturbance.

摘要

对意大利比萨市城市环境中的整个铁路基础设施的噪声影响进行了描述。考虑了普通列车的通过,但也特别关注了与铁路作业相关的噪声源,如调车、装卸、货车移动、制动、尖叫和啸叫。这些噪声通常在噪声建模中被忽略,因此被称为“非常规噪声”。铁路基础设施的特点和受体的分布指导了测点的选择,并进行了一项调查,共有 119 人参与,年龄在 35 至 70 岁之间,且至少在该地区居住了 5 年。研究了普通噪声建模与包括非常规噪声在内的实测噪声之间的差异。计算了 %HA 和实测或模拟铁路噪声的剂量-效应关系,并与文献中的其他关系进行了比较。本文的最后一段专门讨论了铁路振动的暴露及其与噪声暴露的关系。结果表明,传统噪声图对于仅基于普通通过的铁路流行病学研究的局限性,并证实了振动作为干扰增强因素的作用。

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