Geotechnical parameter estimation in tunnelling using relative convergence measurement
Accurate estimation of geotechnical parameters is an important and difficult task in tunnel design and construction. Optimum evaluation of the geotechnical parameters have been carried out by the back‐analysis method based on estimated absolute convergence data. In this study, a back‐analysis techni...
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Published in | International journal for numerical and analytical methods in geomechanics Vol. 30; no. 2; pp. 137 - 155 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Chichester, UK
John Wiley & Sons, Ltd
01.02.2006
Wiley |
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Abstract | Accurate estimation of geotechnical parameters is an important and difficult task in tunnel design and construction. Optimum evaluation of the geotechnical parameters have been carried out by the back‐analysis method based on estimated absolute convergence data. In this study, a back‐analysis technique using measured relative convergence in tunnelling is proposed. The extended Bayesian method (EBM), which combines the prior information with the field measurement data, is adopted and combined with the 3‐dimensional finite element analysis to predict ground motion. By directly using the relative convergence as observation data in the EBM, we can exclude errors that arise in the estimation of absolute displacement from measured convergence, and can evaluate the geotechnical parameters with sufficient reliability. The proposed back‐analysis technique is applied and validated by using the measured data from two tunnel sites in Korea. Copyright © 2005 John Wiley & Sons, Ltd. |
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AbstractList | Accurate estimation of geotechnical parameters is an important and difficult task in tunnel design and construction. Optimum evaluation of the geotechnical parameters have been carried out by the back-analysis method based on estimated absolute convergence data. In this study, a back-analysis technique using measured relative convergence in tunnelling is proposed. The extended Bayesian method (EBM), which combines the prior information with the field measurement data, is adopted and combined with the 3-dimensional finite element analysis to predict ground motion. By directly using the relative convergence as observation data in the EBM, we can exclude errors that arise in the estimation of absolute displacement from measured convergence, and can evaluate the geotechnical parameters with sufficient reliability. The proposed back-analysis technique is applied and validated by using the measured data from two tunnel sites in Korea. Accurate estimation of geotechnical parameters is an important and difficult task in tunnel design and construction. Optimum evaluation of the geotechnical parameters have been carried out by the back‐analysis method based on estimated absolute convergence data. In this study, a back‐analysis technique using measured relative convergence in tunnelling is proposed. The extended Bayesian method (EBM), which combines the prior information with the field measurement data, is adopted and combined with the 3‐dimensional finite element analysis to predict ground motion. By directly using the relative convergence as observation data in the EBM, we can exclude errors that arise in the estimation of absolute displacement from measured convergence, and can evaluate the geotechnical parameters with sufficient reliability. The proposed back‐analysis technique is applied and validated by using the measured data from two tunnel sites in Korea. Copyright © 2005 John Wiley & Sons, Ltd. |
Author | Choi, Min-Kwang Lee, In-Mo Cho, Kook-Hwan Nam, Seok-Woo |
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Keywords | Parameter estimation relative convergence Theoretical study Subways extended Bayesian method back-analysis Three dimensional model Elastoplastic analysis Tunnel driving Properties of materials 3-dimensional analysis Application Tunnel convergence Geotechnics |
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References | Harr ME. Reliability-based Design in Civil Engineering. McGraw-Hill: New York, 1987. Sakurai S, Takeuchi K. Back analysis of measured displacement of tunnels. Rock Mechanics and Rock Engineering 1983; 16:173-180. Jang JB, Kim MK. A study on the behavior prediction of underground structures by back analysis. Tunnel and Underground 1998; 8:139-145. Honjo Y, Wen-Tsung L, Guha S. Inverse analysis of an embankement on soft clay by extended Bayesian method. International Journal of Numerical and Analytical Methods in Geomechanics 1994; 18:709-734. Beck JV, Arnold KJ. Parameter Estimation in Engineering and Science. Wiley: New York, 1977. Honjo Y, Wen-Tsung L, Sakajo S. Application of akaike information criterion statistics to geotechnical inverse analysis: the extended Bayesian method. Structural Safety 1994; 14:5-29. Kim SH, Jung HI. Numerical analysis of the effects of stress anisotropy and tunnel excavation shape on initial elastic-wall displacement. Journal of Korean Geotechnical Society 2002; 16(6):33-42. 2002; 16 1998 1987 1994; 14 1996 1994; 18 1991 1983; 16 1977 1998; 8 Kim (10.1002/nag.478-BIB8) 1996 Honjo (10.1002/nag.478-BIB4) 1994; 14 Jang (10.1002/nag.478-BIB9) 1998; 8 Harr (10.1002/nag.478-BIB10) 1987 Emerald Soft Consulting (10.1002/nag.478-BIB7) 1998 Sakurai (10.1002/nag.478-BIB1) 1983; 16 Beck (10.1002/nag.478-BIB5) 1977 Akutakawa (10.1002/nag.478-BIB2) 1991 Kim (10.1002/nag.478-BIB6) 2002; 16 Honjo (10.1002/nag.478-BIB3) 1994; 18 |
References_xml | – volume: 8 start-page: 139 year: 1998 end-page: 145 article-title: A study on the behavior prediction of underground structures by back analysis publication-title: Tunnel and Underground – year: 1996 – start-page: 937 year: 1991 end-page: 942 – volume: 14 start-page: 5 year: 1994 end-page: 29 article-title: Application of akaike information criterion statistics to geotechnical inverse analysis: the extended Bayesian method publication-title: Structural Safety – volume: 16 start-page: 173 year: 1983 end-page: 180 article-title: Back analysis of measured displacement of tunnels publication-title: Rock Mechanics and Rock Engineering – volume: 16 start-page: 33 issue: 6 year: 2002 end-page: 42 article-title: Numerical analysis of the effects of stress anisotropy and tunnel excavation shape on initial elastic‐wall displacement publication-title: Journal of Korean Geotechnical Society – year: 1977 – volume: 18 start-page: 709 year: 1994 end-page: 734 article-title: Inverse analysis of an embankement on soft clay by extended Bayesian method publication-title: International Journal of Numerical and Analytical Methods in Geomechanics – year: 1987 – year: 1998 – start-page: 937 volume-title: Computer Methods and Advances in Geomechanics year: 1991 ident: 10.1002/nag.478-BIB2 contributor: fullname: Akutakawa – volume-title: Parameter Estimation in Engineering and Science year: 1977 ident: 10.1002/nag.478-BIB5 contributor: fullname: Beck – year: 1996 ident: 10.1002/nag.478-BIB8 contributor: fullname: Kim – volume: 16 start-page: 33 year: 2002 ident: 10.1002/nag.478-BIB6 publication-title: Journal of Korean Geotechnical Society contributor: fullname: Kim – year: 1998 ident: 10.1002/nag.478-BIB7 contributor: fullname: Emerald Soft Consulting – volume-title: Reliability-based Design in Civil Engineering year: 1987 ident: 10.1002/nag.478-BIB10 contributor: fullname: Harr – volume: 16 start-page: 173 year: 1983 ident: 10.1002/nag.478-BIB1 publication-title: Rock Mechanics and Rock Engineering doi: 10.1007/BF01033278 contributor: fullname: Sakurai – volume: 8 start-page: 139 year: 1998 ident: 10.1002/nag.478-BIB9 publication-title: Tunnel and Underground contributor: fullname: Jang – volume: 14 start-page: 5 year: 1994 ident: 10.1002/nag.478-BIB4 publication-title: Structural Safety doi: 10.1016/0167-4730(94)90004-3 contributor: fullname: Honjo – volume: 18 start-page: 709 year: 1994 ident: 10.1002/nag.478-BIB3 publication-title: International Journal of Numerical and Analytical Methods in Geomechanics doi: 10.1002/nag.1610181004 contributor: fullname: Honjo |
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SubjectTerms | 3-dimensional analysis Applied sciences back-analysis Buildings. Public works Computation methods. Tables. Charts Exact sciences and technology extended Bayesian method relative convergence Structural analysis. Stresses Tunnels, galleries |
Title | Geotechnical parameter estimation in tunnelling using relative convergence measurement |
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