The Interaction Analysis of Construction Sequence and Ground Subsidence during Group Pipe Jacking

碩士 === 國立嘉義大學 === 土木與水資源工程學系研究所 === 105 === Sewer pipes, irrigation water supply, and electric power and telecommunication lines are critical infrastructure for urban life. These pipelines are buried underground by the cut and cover method that could result in noise and air pollution during construc...

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Bibliographic Details
Main Authors: WEN SHAN WEI, 魏文山
Other Authors: 陳景文
Format: Others
Language:zh-TW
Online Access:http://ndltd.ncl.edu.tw/handle/vtq3e3
Description
Summary:碩士 === 國立嘉義大學 === 土木與水資源工程學系研究所 === 105 === Sewer pipes, irrigation water supply, and electric power and telecommunication lines are critical infrastructure for urban life. These pipelines are buried underground by the cut and cover method that could result in noise and air pollution during construction. The construction could also cause nearby building collapse and road subsidence that blocks traffic during construction in the rainy season. These pipes are able to be jacked underground without cut and cover during construction due to the progress of positioning technology in engineering surveys. The pipe jacking method can reduce the operation area, vibration, air pollution, and noise during construction without traffic becoming blocked. It is different from the traditional cut and cover method and shows more economy, speed, and convenience in underground engineering. The study case is located at the Chiayi Dapumei Precision Machinery Park in Chiayi County, Taiwan for the public pipelines across the No. 3 National Highway using the group pipe jacking method. The numerical modeling using the finite element method includes evaluating subsidence during group pipe jacking compared with field monitoring records, optimizing the jacking sequence of pipes for less subsidence during construction, and proposing a best plan for further engineering constructions. The results show to be beneficial for promoting knowledge about the pipe jacking construction method and for disaster prevent during construction.