首页> 外文期刊>Arabian journal of geosciences >Numerical modeling of surface settlements at the transition zone excavated by New Austrian Tunneling Method and Umbrella Arch Method in weak rock
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Numerical modeling of surface settlements at the transition zone excavated by New Austrian Tunneling Method and Umbrella Arch Method in weak rock

机译:新奥地利隧道法和伞拱法在弱岩开挖过渡带地表沉降的数值模拟

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摘要

As a result of urbanization all over the world, complicated transportation system have been constructed to supply the need of the public transport. Metro tunnel is the most important effective solution method for public transportation. However, the surface settlement around the metro line in urban areas should be within the allowable limits and it should not damage nearby structures. The tunnel excavation and the support system have to provide a reliable working condition for the workers and the people living along the metro line. Although New Austrian Tunneling Method (NATM) is a very useful method in tunnel excavation, it may be insufficient in weak rock condition. Umbrella Arch Method (UAM) has been recently a viable alternative in various important areas. In this paper, the results of 3-D numerical modeling of surface settlement at the transition zone in Istanbul Metro excavated by NATM and UAM are presented by using a finite difference code called FLAC3D. The results showed that umbrella arch pipe is very effective to minimize the surface settlement. According to the actual measurement result and numerical modeling result, umbrella arch pipe reduced the surface settlement by 71% and 63%, respectively. In addition, the numerical modeling result represented 79.5% of the actual value obtained from in situ for NATM region and 86.0% of in situ value for UAM region.
机译:由于全世界城市化的结果,已经构建了复杂的交通系统来满足公共交通的需求。地铁隧道是公共交通最重要的有效解决方法。但是,城市地区地铁线周围的地面沉降应在允许的范围内,并且不应损坏附近的建筑物。隧道的开挖和支撑系统必须为地铁沿线的工人和人们提供可靠的工作条件。尽管新奥地利隧道法(NATM)在隧道开挖中是非常有用的方法,但在弱岩石条件下可能不足。伞拱法(UAM)最近已在各个重要领域成为可行的替代方法。本文利用有限差分码FLAC3D给出了伊斯坦布尔地铁过渡区由NATM和UAM开挖的地表沉降的3维数值模拟结果。结果表明,伞形拱管对于最小化表面沉降非常有效。根据实际测量结果和数值模拟结果,伞形拱管的表面沉降分别减少了71%和63%。另外,数值模拟结果代表NATM地区从现场获得的实际值的79.5%和UAM地区从现场获得的实际值的86.0%。

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