Hole Wall Stability Analysis of Long-Distance Pipeline Horizontal Directional Crossing

Author:

Guo Zhengwei1ORCID,Chen Zezheng1,Deng Yinjiang1,Huang Tao1,chen Taotao1,Huang Jie1,Wang Zhaohong1

Affiliation:

1. Chongqing University of Science & Technology, Chongqing 401331, China

Abstract

Trenchless technology is a new technique for laying, repairing, and replacing underground pipelines in recent years, but various field accidents are often caused by the failure of hole wall in the process of trenchless construction, which leads to trenchless engineering accidents. Stress and deformation around hole are calculated by theoretical calculation. The numerical calculation method is also used to research the stability of hole wall with different diameters, buried depth, and soil parameters, and the curves of stress and deformation are fitted. The results show that stress and deformation of hole wall increase with the increase of the diameter. Under the condition of shallow burial depth, stress and deformation increase with the increase of burial depth of hole. The stress and deformation are different with different Poisson’s ratio and elastic modulus. This research has a new understanding for the instability of hole wall caused by variations of external parameters, which has important guiding significance for the selection of construction parameters and trenchless path.

Funder

Chongqing Science and Technology Bureau-Basic Research and Frontier Exploration

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

Reference20 articles.

1. Influencing factors for the horizontal directional drilling hole wall stability;K. Kang;Geological Science and Technology Information,2016

2. Utilization of Trenchless Construction Methods in Mainland China to Sustain Urban Infrastructure

3. The trenchless technique for horizontal-directional drilling: soil-related risks and risk mitigation;H. Kruse;Journal of Pipeline Engineering,2009

4. Cause analysis of lost circulation and plugging method in Paleogene of Kuqa Piedmont structure;B. Hou;Oil Drilling & Production Technology,2009

5. Horizontal Directional Drilling: Profile of an Emerging Industry

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