• 中国科学引文数据库(CSCD)来源期刊
  • 中文核心期刊中文科技核心期刊
  • Scopus RCCSE中国核心学术期刊
  • 美国EBSCO数据库 俄罗斯《文摘杂志》
  • 《日本科学技术振兴机构数据库(中国)》
二维码

隧道建设(中英文) ›› 2011, Vol. 31 ›› Issue (S1): 105-110.

• 研究与探索 • 上一篇    下一篇

地下掘进之地盘——机械互制与可挖指标研探

陈立宪1,杨喆巽1,陈尧中2,巫奇颖2   

  1. (1.台北科技大学, 台北;2.台湾科技大学, 台北)
  • 收稿日期:2011-06-29 出版日期:2011-08-05 发布日期:2011-11-04
  • 作者简介:陈立宪(1962—),男,屏东人,2001年毕业于美国明尼苏达大学土木系大地力学组,台北科技大学副教授,主要研究机械式地下开挖之力学模式暨实验分析、音射法(AE)与电子点纹干涉法(ESPI)在破坏力学之应用。

Study on Geotechnical——Mechanical Interaction with Tunnel Penetration and Cuttability Indices

LiHsien Chen1, ZheXun Yang1, YaoChung Chen2, ChiYing Wu2   

  1. (1. Dept. of Civil Engineering, National Taipei University of Technology, Taipei; 2. Dept. of Construction Engineering, National Taiwan University of Science & Technology, Taipei)
  • Received:2011-06-29 Online:2011-08-05 Published:2011-11-04

摘要: 地下机械式之掘削效率乃为进度、成本及品控之关键要因,一般工程思考皆多考虑工法与机型对应各类不同地层之“可挖性”作探讨,即针对地质材料选择适应之切削面盘,鲜能再对地盘——机械开挖互制行为作一“适确性”研析,而本研究先由微观之量纲分析及力学尺度探讨并建立指标,运用至巨观推力、扭矩之施工良窳、可挖性及正常施作或异况破坏之分析。机械式掘削接触地质与产生之互制行为相异性极大,故由地质破坏特征作为切削地盘材料之分类,藉此提供该广义式之探讨方针;其次在施工判准所建立之可挖指标上,使用量纲分析方法进行具代表力学行为之因子解析,作为建置指标的依据;再者,应用现场调查以资搜机械式开挖所量测的推进力系数值,进而佐证其适确性,最终完整研析机械式掘削开挖之行为与可挖性指标之应用。

关键词: 全断面隧道钻掘机工法(TBM), 潜盾工法(ST), 管推工法(PJ), 广义式掘削机制, 量纲分析(DA), 可挖性指标(CI)

Abstract: To speed up construction of mass transit subway and the popularity rate of sewage, Taiwan's underground excavation works, especially for mechanical cutting cases, show an ascendant tendency. This study presents a generalized solution for underground geological-mechanical interaction. By using dimensional analysis, this model generalizes geological characteristics grouped into three categories, brittle (rocklike), the ductile (soillike) and brittleductile (gravellike) type, with respect to two cutting forces (thrust and torque) to evaluate their excavation/penetration rate. Furthermore, the leading cuttability indices can be obtained to be enable to assess the underground excavation. Meanwhile, insitu experimental results from shield tunneling and pipe jacking construction were used to examine this model and it shows a nice agreement between both. From this analytical approach, a proposed “ovalshaped cutting ellipsoid”, including its center (O), area (A) and long/short axis (ax/by, or ay/bx), can be used not only to estimate the functionality and efficiency of cutting machine adopted for tunnel project, but also to offer a warning information for inadequate cutting strategy.

Key words: tunnel boring machine(TBM), shield tunnel(ST), pipe jacking(PJ), generalized cutting mechanism, dimensional analysis(DA), cuttability indices(CI)