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Environmental impact analysis for the construction of subway stations: Comparison between open-excavation and underground-excavation scheme

机译:地铁站建设的环境影响分析:开挖与地下挖掘方案的比较

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The excessive environmental impacts from the construction of subway infrastructure have become a concern for operators who are keen on continuing to lower the environmental footprint, but the factors affecting the impacts are yet to be fully identified. Excavation scheme is the governing factor in subway construction, not only because it prescribes the ensuing construction procedures, but it also epitomizes the design philosophy towards the interaction between the subway structure and city environment. In this paper, a comparative assessment is made among the fifteen mid-point environmental impacts from the two major excavation schemes in subway construction, i.e. the open-excavation (OE) and underground-excavation (UE) scheme. The case station provides a perfect example for such a comparison as it consists of both OE and UE section at the same buried depth. GHG emissions are identified as the largest contributor after normalization. However, GHG emissions are not representative for the overall impacts. The UE section is responsible for more impacts per area than that of OE section in all the investigated categories. The gap between the two sections is attributable to the extra reinforcement procedures that protect the surrounding infrastructure from adverse settlement. Though the underground environment limits the use of construction machines, the UE construction involves more on-site impacts because it requires 11.79 times the labor used in the OE section. Based on the results, the adaptability of the two methods was discussed, considering the life-cycle performance and their interaction with the city environment.
机译:来自地铁基础设施建设的过度环境影响已成为对持续降低环境足迹的经营者的关注,但影响影响的因素尚未得到完全识别。挖掘方案是地铁施工的管理因素,不仅是因为它规定了随后的施工程序,而且还向地铁结构和城市环境之间的相互作用构成了设计理念。在本文中,在地铁建设中的两种主要挖掘方案中的十五个中点环境影响中,即开挖(OE)和地下挖掘(UE)方案中的比较评估。案例站提供了一个完美的示例,因为它包括在同一埋地深度的OE和UE部分。标准化后,GHG排放被确定为最大的贡献者。但是,温室气体排放并不代表整体影响。 UE部分负责每个区域中的每个区域的更多影响,而不是所有调查类别中的OE部分。两部分之间的差距归因于额外的钢筋程序,这些程序保护周围基础设施免受不利沉降。虽然地下环境限制了建筑机器的使用,但UE结构涉及更多的现场影响,因为它需要OE部分中使用的劳动力的11.79倍。基于结果,讨论了两种方法的适应性,考虑到生命周期性能及其与城市环境的互动。

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