Influence of Different Construction Methods on Lateral Displacement of Diaphragm Walls in Large-Scale Unsupported Deep Excavation

Author:

Chiu Hao-Wei1,Hsu Chia-Feng2ORCID,Tsai Fu-Huan3,Chen Shong-Loong1ORCID

Affiliation:

1. Department of Civil Engineering, National Taipei University of Technology, Taipei 10608, Taiwan

2. Department of Civil Engineering, Chienkuo Technology University, Changhua City 500020, Taiwan

3. Huaku Development Co., Ltd., Taipei 110501, Taiwan

Abstract

This study examines the influence of different construction methods on the lateral displacement of diaphragm walls in large-scale, unsupported deep excavations. Using the three-dimensional finite element method (FEM) with PLAXIS 3D 2017 software, the research assesses how varying construction techniques impact wall stability, particularly in proximity to sensitive structures like metro systems. The project uniquely integrates peripheral top-down and central bottom-up approaches to minimize environmental disruption. Key focus areas include the roles of back-pull slabs, zoned excavation, and cross walls in reducing wall deformation. Findings reveal that zoned excavation significantly controls lateral displacement on longer site sides, enhancing adjacent structure safety and overall construction integrity. Back-pull slabs are shown to effectively decrease top wall deformation, thereby increasing structural stiffness. Moreover, despite their considerable length (nearly 60 m), cross walls play a crucial role in controlling lateral deformation along the excavation’s length. These insights offer valuable guidance for future projects, especially in regions like Taiwan, where experience with such large-scale, unsupported excavations is limited.

Funder

Ministry of Science and Technology, Taiwan

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference25 articles.

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4. A Case Study of 3-D Numerical Analysis for Nonstrut Construction Method in Huge Area Foundation Excavation;Jeng;J. Art Des. Huafan Univ.,2016

5. Zoned and staged construction of an underground complex in Shanghai soft clay;Li;Tunn. Undergr. Space Technol.,2017

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