• CSCD核心中文核心科技核心
  • RCCSE(A+)公路运输高质量期刊T1
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  • EBSCOPж(AJ)JST
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隧道建设(中英文) ›› 2010, Vol. 30 ›› Issue (S1): 324-332.

• 施工技术 • 上一篇    下一篇

超高压地下电缆潜盾隧道新技术之应用实例

陈文通1,游健龙1,陈福胜2,何泰源2,陈聪海2   

  1. 1. 台湾电力公司输变电工程处,台北;2. 台湾世曦工程顾问股份有限公司,台北
  • 收稿日期:2010-06-12 出版日期:2010-08-14 发布日期:2010-08-25
  • 作者简介:陈文通(1965—),男,1991年毕业于台湾工业技术学院营建工程系,学士,现任台电输变电工程处电缆设计组管路二课长,主要从事超高压地下电缆线路土木工程规范设计工作。E-mail:u746406@taipower.com.tw。

Case Application of New Technologies in Extra High Voltage
Cable Shieldbored Tunnel

 CHEN  Wen-Tong1, LIU  Jian-Long1, CHEN  Fu-Qing2, HE  Tai-Yuan2, CHEN  Cong-Hai2   

  1. 1. Transmission and Substation Projects Department, Taiwan Power Company, Taipei;
    2. CECI Engineering Consultants, Inc., Taipei
  • Received:2010-06-12 Online:2010-08-14 Published:2010-08-25

摘要:

随着社会经济高度发展,民众生活素质不断提高,电力建设为满足都市化及现代化的需求,超高压电缆隧道地下化为当前建设趋势。本文以台湾电力公司高港—五甲—高雄345kV地下电缆线路凤林路段潜盾隧道统包工程为例,针对高地下水位、砂质土壤及砾石地层之工址地质特性,分别就潜盾发进施工安全考量、大口径潜盾隧道急曲线施工等经验进行说明,并介绍首度采用可挠伸缩接头衔接电缆隧道与分歧井案例,可有效降低接头处之应力并解决不同结构间之差异沉陷问题。

关键词: 电缆隧道, 潜盾工法, 可挠伸缩接头, 分歧井

Abstract:

Due to the rapid development of economy, the living qualities are continuously upgraded. The building of electricity power is aimed to meet the needs of urbanization and modernization. Installing extra high voltage cables into underground tunnels is the current trends. In this paper, the turnkey project for the extra high voltage cable shieldbored tunnel conducted by Taiwan Power Company is given. This project is located at the site with such geological characteristics as high water table, sandy soil and gravel formations. The experience in the safe launching of the shield machine from the shaft and in the construction of the largediameter tunnel at sharp turn has been described in this paper. In addition, it is the first time in Taiwan that flexible expansion joints are used to connect the cable tunnel and the divert shaft. The flexible expansion joint can effectively reduce the stress concentration in joints and overcome the deformations occurring between the different types of structures.

Key words: cable tunnel, shield tunneling method, flexible expansion joint, divert shaft