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Non-deformable support system application at tunnel-34 of Ankara-Istanbul high speed railway project

机译:不可变形支撑系统在伊斯坦布尔安卡拉高速铁路34号隧道中的应用

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Non-Deformable Support System (NDSS) is one of the support system analysis methods. It is likely seen as numerical analysis. Obviously, numerical modeling is the key tool for this system but not unique. Although the name of the system makes you feel that there is no deformation on the support system, it is not true. The system contains some deformation but in certain tolerance determined by the numerical analyses. The important question is what is the deformation tolerance? Zero deformation in the excavation environment is not the case, actually. However, deformation occurred after supporting is important. This deformation amount will determine the performance of the applied support. NDSS is a stronghold analysis method applied in full to make this work. While doing this, NDSS uses the properties of rock mass and material, various rock mass failure criteria, various material models, different excavation geometries, like other methods. The thing that differ NDSS method from the others is that NDSS makes analysis using the time dependent deformation properties of rock mass and engineering judgement. During the evaluation process, NDSS gives the permission of questioning the field observations, measurements and timedependent support performance. These transactions are carried out with 3-dimensional numeric modeling analysis. The goal of NDSS is to design a support system which does not allow greater deformation of the support system than that calculated by numerical modeling. In this paper, NDSS applied to the problems of Tunnel 34 of the same Project (excavated with NATM method, has a length of 2218 meters), which is driven in graphite schist, was illustrated. Results of the system analysis and insitu measurements successfully coincide with each other.
机译:不可变形支撑系统(NDSS)是支撑系统分析方法之一。它可能被视为数值分析。显然,数值建模是该系统的关键工具,但并非唯一。尽管系统的名称使您感到支撑系统没有变形,但事实并非如此。该系统包含一些变形,但具有一定的公差,由数值分析确定。重要的问题是什么是变形公差?实际上,在开挖环境中并非零变形。但是,支撑后发生变形是重要的。该变形量将确定所施加的载体的性能。 NDSS是全面应用的据点分析方法,可以完成这项工作。这样做时,NDSS会像其他方法一样使用岩体和材料的属性,各种岩体破坏准则,各种材料模型,不同的开挖几何形状。 NDSS方法与其他方法的不同之处在于,NDSS使用随时间变化的岩体变形特性和工程判断进行分析。在评估过程中,NDSS允许质疑现场观察,测量和随时间变化的支持性能。这些交易是通过3维数值建模分析进行的。 NDSS的目的是设计一种支撑系统,该支撑系统不允许支​​撑系统的变形大于通过数值建模计算得出的变形。在本文中,NDSS应用于同一项目(采用NATM方法挖掘,长度为2218米)的隧道34的问题,该问题是在石墨片岩中驱动的。系统分析和现场测量的结果彼此成功地吻合。

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