Faculty of Civil Engineering, Transportation Department, University of Thessaly, Pedion Areos, 383 34 Volos, Greece.
Sci Total Environ. 2012 Nov 15;439:230-7. doi: 10.1016/j.scitotenv.2012.08.097. Epub 2012 Oct 15.
Attiko Metro S.A., the state company ensuring the development of the Athens Metro network, has recently initiated a new extension of 7.6 km, has planned for line 3 of Athens Metro from Haidari to Piraeus "Dimotikon Theatre" towards "University of Piraeus" (forestation), connecting the major Piraeus Port with "Eleftherios Venizelos" International Airport. The Piraeus extension consists of a Tunnel Boring Machine, 2 tracks and, tunnel sections, as well as 6 stations and a forestation (New Austrian Tunnelling Method) at the end of the alignment. In order to avoid the degradation of the urban acoustic environment from ground borne noise and vibration during metro operation, the assessment of the required track types and possible noise mitigation measures was executed, and for each section and each sensitive building, the ground borne noise and vibration levels will be numerically predicted. The calculated levels were then compared with ground borne noise and vibration level criteria. The necessary mitigation measures were defined in order to guarantee, in each location along the extension, the allowable ground borne Noise and Vibration max. levels inside nearby sensitive buildings taking into account alternative Transfer Functions for ground borne noise diffusion inside the buildings. Ground borne noise levels were proven to be higher than the criterion where special track work is present and also in the case of the sensitive receptor: "Dimotikon Theatre". In order to reduce the ground borne noise levels to allowable values in these sections, the installation of tracks and special track work on a floating slab was assessed and recommended.
阿提卡地铁公司(Attiko Metro S.A.)是负责雅典地铁网络开发的国有企业,最近启动了一项新的 7.6 公里的延伸工程,规划了雅典地铁 3 号线从哈德里(Haidari)到比雷埃夫斯的“Dimotikon 剧院”(造林),连接比雷埃夫斯港主要港口和“Eleftherios Venizelos”国际机场。比雷埃夫斯延伸段包括一个隧道掘进机、2 条轨道和隧道段,以及 6 个车站和一个造林区(新奥地利隧道施工法)在路线的尽头。为了避免地铁运行时地面传播的噪声和振动对城市声学环境的破坏,对所需的轨道类型和可能的噪声缓解措施进行了评估,并且针对每个路段和每个敏感建筑物,对地面传播的噪声和振动水平进行了数值预测。然后将计算出的水平与地面传播的噪声和振动水平标准进行了比较。为了保证在延伸段的每个位置,都能在考虑到建筑物内地面传播噪声扩散的替代传递函数的情况下,满足附近敏感建筑物内允许的地面传播噪声和振动最大水平,定义了必要的缓解措施。在存在特殊轨道工程的地方和在敏感接收点“Dimotikon 剧院”,地面传播噪声水平被证明高于标准。为了降低这些路段的地面传播噪声水平到允许值,评估并推荐了在浮置板上安装轨道和特殊轨道工程的方案。