Risks involved in vertical shafts construction for the eastern drainage tunnel in Mexico

Victor Jiménez Arguelles, Luis Antonio Rocha Chiu, Aurora Poó Rubio
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Abstract

This article describes the main stages involved in the construction of the vertical shafts (large-diameter vertical wells), which are necessary for the subsequent construction of the tunnel´s sections. The different risk situations existing during the construction of the Eastern Drainage Tunnel in the valley of Mexico City (in Spanish, "Tunel Emisor Oriente") are analyzed. In order for this 52 km-long and 7.5 m-wide tunnel to carry part of the city’s sewage, 25 shafts must first be built, ranging from 55 to 150 meters deep. The magnitude of such a project implies working in different geographical areas and varied geological strata involving the presence of groundwater, which increases the risks due to possible landslides or flooding during excavation. As digging will occur in different types of soil, varying procedures must be used depending on soil type. Likewise, due to the magnitude of this kind of project, detailed scheduling and planning are required as simultaneous works on different fronts are necessary to meet deadlines. The study mentions that, while projects like these involve high risks for workers, analysis of activities and situations are conducted precisely to demonstrate that such risks can be considerably reduced.
墨西哥东部排水隧道竖井施工风险分析
本文介绍了竖井(大直径竖井)施工的主要阶段,这是后续隧道各段施工所必需的。分析了墨西哥城东部排水隧道(西班牙语:“Tunel Emisor Oriente”)施工过程中存在的不同风险情况。为了使这条长52公里、宽7.5米的隧道能够输送部分城市污水,首先必须建造25个竖井,深度从55米到150米不等。这样一个工程的规模意味着在不同的地理区域和不同的地质层工作,涉及地下水的存在,这增加了挖掘过程中可能发生山体滑坡或洪水的风险。由于挖掘将在不同类型的土壤中进行,因此必须根据土壤类型使用不同的程序。同样,由于这类项目的规模,需要详细的日程安排和计划,因为需要在不同的方面同时工作以满足最后期限。该研究提到,虽然像这样的项目对工人来说风险很高,但对活动和情况的分析恰恰表明,这种风险可以大大降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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