孟加拉农业大学交通噪音污染指数评估及其对学生健康的影响

M. Farukh, Rahamoni Khanam, Hridia Chowdhury, M. Sharker, M. Hossain, R. Khatun
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摘要

孟加拉国农业大学(BAU)是一个农业研究的主要校园,坐落在雅鲁藏布江西部488公顷的风景秀丽的土地上。本研究旨在了解北京大学各主要学术点的交通噪音污染水平,并评估噪音污染对学生健康的影响。记录的Lave范围为55-85 dB。在FoA和FoAH,全天的音量在79-85分贝之间。在这两个核心学术点的Lave几乎是允许极限45分贝的两倍。乔伯尔沼地中午的最大气压(96 dB)是整个BAU校园内的最大气压。交通车辆的运动是这些噪音的主要来源。Leq、Lnp和NC给出的噪声声级指数及其波动程度在FoA、FoAH、FoAERS的路边位置较高。在噪声污染方面,三个采样区域即FoA, FoAH和KR市场在早上显示为“中等风险”(Lave: 81 dB),而FoAH具有“高风险”,Lave为85 dB。结果表明,FoA、FoAH、KR市场、Jobber moor和行政大楼是噪声强度最高的区域。由于噪音过大,大学生面临着烦躁、头痛、紧张、失眠、焦虑、听力问题、高血压等问题。控制噪声污染是BAU确保无噪音学术文化的绝对必要,而BAU的居民正面临着严重的噪声相关健康危害。研究结果将有助于BAU当局监测和制定结构噪声管理政策,并控制我们心爱的BAU的过度噪声。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Traffic Induced Noise Pollution Indices and its Impact on Students’ Health at Bangladesh Agricultural University
The Bangladesh Agricultural University (BAU) is a prime campus of agricultural study on 488 hectares of scenic land on the western array of the old Brahmaputra River. This study aimed to measure the prevailing levels of traffic induced noise pollution at the core academic points and to assess the impacts of noise pollution on students’ health at BAU. The recorded Lave ranges from 55–85 dB. The Lave ranges from 79–85 dB throughout the whole day at FoA and FoAH. The Lave at these two core academic points are almost the double than the permissible limit of 45 dB. The Lmax pressure (96 dB) at Jobber moor during the noon is the maximum inside the whole BAU campus. The movement of traffic vehicles is responsible as the main sources of these noise. The noise level indices and their degree of fluctuation as given by Leq, Lnp, and NC are higher in roadside locations namely at FoA, FoAH, FoAERS. In terms of noise pollution, three of the sampled areas namely FoA, FoAH, and KR market show ‘moderate risk’ (Lave: 81 dB) during the morning whilst, the FoAH possessed the ‘high risk’ with the Lave of 85 dB. The results show that the FoA, FoAH, KR market, Jobber moor, and administration building can be labelled as the highest zone of noise level intensity. Due to excessive noise, university students are facing disorders like irritation, headache, nervousness, insomnia, anxiety, hearing problem, and hypertension. Controlling noise pollution is an absolute necessity for BAU to ensure noise-less academic culture whilst the dwellers of BAU is in the risk of serious noise-related health hazards. The results would be very useful for BAU authority to monitor and formulate a structural noise management policy, and to control excessive noise at our beloved BAU.
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