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车辆尾流和射流对城市公路隧道中污染物扩散特性和稀释效率的耦合作用。

Coupling effect of vehicle wake and jet flow on the dispersion characteristics and dilution efficiency of pollutants in urban highway tunnels.

机构信息

Beijing Key Laboratory of Green Building Environment and Energy Saving Technology, Beijing University of Technology, Beijing 100124, China; Faculty of Architecture, Civil and Transportation Engineering, Beijing University of Technology, Beijing 100124, China.

Jiangsu Provincial Transport Engineering Construction Bureau, Nanjing 210004, China.

出版信息

Sci Total Environ. 2023 Oct 1;893:164926. doi: 10.1016/j.scitotenv.2023.164926. Epub 2023 Jun 15.

Abstract

The pollutants emitted by traveling vehicles are prone to accumulation inside urban highway tunnels, which poses a serious threat to the driving safety and health of passengers. This study employed the dynamic mesh method to simulate a traveling vehicle and investigated the coupling effect of vehicle wake and jet flow on the dispersion characteristics of pollutants in urban highway tunnels. To ensure the accuracy of the numerical simulation results, the turbulence model (realizable k-ε model) and dynamic mesh model were validated through field tests. The results revealed that jet flow can disrupt the large-scale longitudinal vortices pattern in the wake region, whereas vehicle wake can simultaneously weaken the entrainment strength of jet flow. The jet flow was found to be decisive in the space with a height greater than 4 m, whereas the vehicle wake intensity was considerably stronger at the bottom space of the tunnel, leading to the accumulation of pollutants in the passenger breathing zone. To evaluate the effect of jet fans on pollutants in the breathing zone, an innovative dilution efficiency was proposed. The dilution efficiency can be significantly affected by the intensity of vehicle wake and turbulence. Moreover, the dilution efficiency of alternative jet fans was better than that of traditional jet fans.

摘要

行驶车辆排放的污染物在城市公路隧道内易发生聚集,这对隧道内司乘人员的行车安全和健康构成严重威胁。本研究采用动网格方法模拟行驶车辆,研究车辆尾流和射流的耦合效应对城市公路隧道内污染物扩散特性的影响。为确保数值模拟结果的准确性,通过现场测试对湍流模型(realizable k-ε 模型)和动网格模型进行了验证。结果表明,射流可以破坏尾流区的大尺度纵向涡结构,而车辆尾流同时削弱射流的卷吸强度。射流在高度大于 4m 的空间中起决定性作用,而车辆尾流强度在隧道底部空间较强,导致污染物在乘客呼吸区积聚。为了评估射流风机对呼吸区污染物的影响,提出了一种新的稀释效率。稀释效率会受到车辆尾流和湍流强度的显著影响。此外,替代射流风机的稀释效率优于传统射流风机。

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