new austrian tunneling method
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Author(s):  
Lucas de Araujo Estanqueiro ◽  
Levi Salvi

A escolha do método para escavação de túneis é determinada pelo projeto de traçado e pelo tipo de solo ou rocha encontrados em cada região. No entanto, o método de escavação está ligado diretamente a velocidade desejada para execução do serviço e ao tipo de solo. Esses dois fatores regem o estudo de viabilidade, porque o método mais rápido dificilmente será o mais econômico e sustentável. A escolha equivocada do método poderá acarretar uma manutenção mais onerosa para o projeto na sua totalidade, que engloba a execução, acabamento e manutenção. Este artigo avaliou e compilou as características do “New Austrian Tunneling Method” (NATM), tal como suas etapas de execução e aplicação prática, resultando em uma análise que demonstra ser uma alternativa eficiente, sustentável e economicamente viável na construção de túneis, primordialmente rodoviários e ferroviários, posto que o cenário nacional tem grande potencial de crescimento no segmento de infraestrutura de transporte.


2020 ◽  
Vol 30 (3) ◽  
pp. 381-386
Author(s):  
Hafeezur Rehman ◽  
Abdul Muntaqim Naji ◽  
Wahid Ali ◽  
Muhammad Junaid ◽  
Rini Asnida Abdullah ◽  
...  

2018 ◽  
Vol 7 (4.20) ◽  
pp. 40
Author(s):  
Heba Kamal ◽  
. .

The decline in the over ground utilizable space and increment in development of metro structures, cut and cover structures are winding up fairly difficult to conceptualize and build. In this examination, a nonlinear two dimensional limited component investigation was completed to show the New Austrian Tunneling Method (NATM) burrow developed in frail shake utilizing the business limited component with joint programming PHASE 2.The validity of the numerical modeling procedure performed by the author was checked by making back-analysis for an actual case study of Strengen Tunnel which is one of the biggest expressways in western Austria.  A comprehensive parametric study was performed on a hypothetical circle tunnel. Two dimensional numerical simulations with the finite element with joint software PHASE 2 have been performed to ground behaviour with   the results of the numerical analysis are presented and   discussed for recommendations for future work. In general the tangential stress at side wall and crown  obtained from  finite element with joints are  nearly equal or higher than the closed form solution and equivalent continuum.                                                                                   


2015 ◽  
Vol 2522 (1) ◽  
pp. 113-120 ◽  
Author(s):  
Seyedmohammadhossein Hosseinian ◽  
Kenneth F. Reinschmidt

Forecasting project final duration (i.e., time at completion) is crucial to project risk management and is always sought by project managers during the construction period. Because of a strong correlation between past and future performances in linear projects, past progress data are the best source of information to forecast final duration of this type of project, including tunneling projects constructed by the new Austrian tunneling method (NATM). Bayesian inference is a robust probabilistic approach that can provide accurate forecasts of final duration based on a project's past performance. However, results of research in this field have shown that selecting an appropriate model, which represents the unknown pattern of the project's actual progress well, is the most challenging and subjective part of this approach. Effective risk management necessitates looking for the best model that can forecast project final duration accurately and precisely, especially early in the project. This research was aimed at finding a best progress model for NATM tunneling projects by conducting Bayesian analysis on available data of a massive project, the Niayesh highway tunnel in Iran. The analysis showed that the dual Gompertz function (with flexible lower asymptote) was the most reliable model for this purpose. The results of this research bring advantages to the planning and risk management of NATM tunneling projects, which are discussed in this paper, and can be very useful for future NATM tunnel constructions.


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