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Innovative Construction Method for Oversized Excavations with Bipartition Walls

机译:隔墙超大开挖的创新施工方法

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This paper presents an innovative construction method with bipartition walls (BPW), which was developed to reduce the excavation-induced adverse impact on the supporting structures and surrounding environment in oversized deep foundation pits. In the proposed construction method, apart from the retaining walls needed in the conventional foundation pits, two temporary parallel partition walls are constructed in the foundation pit to divide the oversized pit into two separated pits and a narrow pit in between. The separated pits can be excavated either successively or simultaneously, leaving the soil in the narrow pit to decrease the interaction of these separated pits. After the completion of the separated pits, the soil in the narrow pit is removed, and finally the temporary partition walls are demolished after the completion of the excavations. This proposed method that divides the oversized pit into small ones using BPW decreases the interaction between these pits and, thus, improves the excavation flexibility and decreases excavation deformations. To facilitate its application, numerical simulations are conducted to determine the spacing of the parallel partition walls. This innovative construction method was applied in an oversized foundation pit in Shanghai soft clay. Field investigation confirmed the applicability of the proposed construction method. (C) 2017 American Society of Civil Engineers.
机译:本文提出了一种带有分隔墙(BPW)的创新施工方法,旨在减少开挖引起的对超大型深基坑支护结构和周围环境的不利影响。在所提出的施工方法中,除了传统基坑所需的挡土墙外,在基坑中还建造了两个临时的平行隔墙,以将超大的坑分成两个分开的坑和一个在其间的狭窄坑。可以连续或同时挖掘分离的坑,将土壤留在狭窄的坑中,以减少这些分离的坑之间的相互作用。分离的坑完成后,清除狭窄坑中的土壤,最后在开挖完成后拆除临时隔墙。所提出的使用BPW将超大型坑分成小坑的方法减少了这些坑之间的相互作用,从而提高了挖掘的灵活性并减少了挖掘变形。为了促进其应用,进行了数值模拟以确定平行隔墙的间距。这种创新的施工方法被应用在上海软土的超大基坑中。现场调查证实了所提出的施工方法的适用性。 (C)2017年美国土木工程师学会。

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