Rafidah Mazlan, Lazi Mohd Khairul Afzan Mohd, Padil Khairul Hazman, Hassan Sitti Asmah, Sulaiman Norliana
Department of Geotechnics and Transportation, Faculty of Civil Engineering, Universiti Teknologi Malaysia, Johor Bahru, 81310, Johor, Malaysia.
Forensic Engineering Centre, Institute for Smart Infrastructure and Innovative Construction, Universiti Teknologi Malaysia, Johor Bahru, 81310, Johor, Malaysia.
Environ Sci Pollut Res Int. 2025 Jul;32(34):20714-20736. doi: 10.1007/s11356-025-36841-2. Epub 2025 Aug 23.
Rail transport represents an environmentally sustainable mode of transportation, with traffic volumes anticipated to rise in the coming decades. However, there is limited understanding of its impact on the residential area of human annoyance that affects the quality of life for residents near railway lines. This study evaluated the effect of types of train traffic-induced ground-borne vibrations on human annoyance. It is challenging to accurately assess the impact of vibration exposure caused by rail traffic. There is currently a lack of reliable models to evaluate vibration exposure. However, the distance from the railway track appears to be the most effective indicator of exposure to vibrations from rail traffic. The result presents the association between characterisation and annoyance from vibrations and its stratification by train type. Furthermore, speed, distance, and operational time were evaluated as the key factors influencing the relationship between survey results and field tests. High-speed trains are notably associated with increased annoyance levels, with 17 respondents reporting being highly annoyed and 26 reporting annoyance out of 208 total respondents due to elevated vibration exposure, highlighting the significant vibrations in causing discomfort and annoyance among residents. Hence, this study examines the impact of train-induced ground-borne vibrations on the human annoyance for residents near railway lines. Using field tests and surveys, it highlights the need for balancing sustainable rail transportation with minimising its negative effects on nearby communities and implementing measures to reduce vibrations and address human annoyance.
铁路运输是一种环境可持续的交通方式,预计未来几十年交通量将会增加。然而,对于其对人类烦恼居住区域的影响,人们了解有限,而这种影响会波及铁路沿线居民的生活质量。本研究评估了列车交通引起的地面振动类型对人类烦恼的影响。准确评估铁路交通引起的振动暴露影响具有挑战性。目前缺乏可靠的模型来评估振动暴露。然而,与铁轨的距离似乎是铁路交通振动暴露最有效的指标。研究结果呈现了振动特征与烦恼之间的关联以及按列车类型的分层情况。此外,速度、距离和运营时间被评估为影响调查结果与现场测试之间关系的关键因素。高速列车与烦恼程度增加显著相关,在208名总受访者中,有17人表示高度烦恼,26人表示因振动暴露加剧而烦恼,这凸显了振动在导致居民不适和烦恼方面的显著影响。因此,本研究考察了列车引起的地面振动对铁路沿线居民人类烦恼的影响。通过现场测试和调查,强调了在平衡可持续铁路运输与尽量减少其对附近社区的负面影响以及采取措施减少振动和解决人类烦恼方面的必要性。