Panulinova Eva, Harabinová Slávka, Argalášová Lubica
Institute of Structural Engineering, Department of Geotechnics and Traffic Engineering, Faculty of Civil Engineering, Technical University of Košice, Košice, Slovakia.
Institute of Hygiene, Faculty of Medicine, Comenius University, Bratislava, Slovakia.
Noise Health. 2016 Nov-Dec;18(85):329-337. doi: 10.4103/1463-1741.195799.
Tramway has become a serious urban noise source in densely populated areas. The disturbance from squealing noise is significant. Curve squeal is the very loud, tonal noise emitted by tram operation in tight radius curves. Studies had reported a relationship between noise levels and health effects, such as annoyance, sleep disturbance, and elevated systolic and diastolic blood pressure.
This study aimed to analyze the wheel squeal noise along the tramway line in Košice, Slovakia, review the effects on human health, and discuss its inclusion in the design method. To observe the influence of a track curve on noise emission, several measurement points were selected, and the noise emission was measured both in the curve and in the straight lines employing the same type of permanent way.
The results in the sections with the radius below 50 m were greatly affected by the presence of a squeal noise, while the resulting noise level in the sections with the radius above 50 m depended on their radius. The difference between the average values of LAeq with and without the squeal in the measurement points with the radius below 50 m was 9 dB. The difference between the measurements in the curve sections with the radius below 50 m and those in the straight line was 2.7 dB.
The resulting noise level in general was influenced by the car velocity and the technical shape of the permanent way. These results can be used in noise prognoses and in the health effect predictions.
在人口密集地区,有轨电车已成为严重的城市噪声源。尖叫声产生的干扰十分显著。曲线尖叫是有轨电车在小半径弯道运行时发出的非常响亮的音调噪声。研究报告了噪声水平与健康影响之间的关系,如烦恼、睡眠干扰以及收缩压和舒张压升高。
本研究旨在分析斯洛伐克科希策有轨电车线路沿线的车轮尖叫噪声,评估其对人体健康的影响,并讨论将其纳入设计方法的情况。为观察轨道曲线对噪声排放的影响,选择了几个测量点,采用相同类型的轨道在弯道和直线段测量噪声排放。
半径小于50米的路段结果受尖叫噪声存在的影响很大,而半径大于50米的路段产生的噪声水平取决于其半径。半径小于50米的测量点有尖叫和无尖叫时LAeq平均值的差异为9分贝。半径小于50米的弯道段与直线段测量值的差异为2.7分贝。
总体而言,产生的噪声水平受车速和轨道技术形状的影响。这些结果可用于噪声预测和健康影响预测。