Characterization of Model Uncertainty for Cantilever Deflections in Undrained Clay
暂无分享,去创建一个
Kok-Kwang Phoon | Q. F. Hu | D. M. Zhang | H. W. Huang | K. Phoon | Hong-wei Huang | Dongming Zhang | Q. Hu
[1] C. Hsein Juang,et al. Normalized Shear Modulus and Material Damping Ratio Relationships , 2005 .
[2] S. Lacasse,et al. Reliability issues and future challenges in geotechnical engineering for offshore structures , 1994 .
[3] G. Wayne Clough,et al. Movement Control of Excavation Support Systems by Iterative Design , 1989 .
[4] Jheng Uen-zen. Evaluation of analyzing excavation-induced wall deflection and ground movement using hardening soil models , 2010 .
[5] W. H. Tang,et al. Model Uncertainty in Offshore Geotechnical Reliability , 1995 .
[6] C. Hsein Juang,et al. Reliability Analysis and Updating of Excavation-Induced Ground Settlement for Building Serviceability Assessment , 2008 .
[7] A. S. Osman,et al. Ground Movement Predictions for Braced Excavations in Undrained Clay , 2006 .
[8] Malcolm D. Bolton,et al. Strength mobilization in clays and silts , 2011 .
[9] Wilson H. Tang,et al. Probability concepts in engineering planning and design , 1984 .
[10] Jie Zhang,et al. Bayesian Framework for Characterizing Geotechnical Model Uncertainty , 2009 .
[11] J. Burland. On the compressibility and shear strength of natural clays , 1990 .
[12] A. S. Osman,et al. Load–displacement solutions for piles and shallow foundations based on deformation fields and energy conservation , 2008 .
[13] C. Hsein Juang,et al. Characterization of the uncertainty of the Robertson and Wride model for liquefaction potential evaluation , 2004 .
[14] N. Janbu. Soil Compressibility as Determined by Oedometer and Triaxial Tests , 1963 .
[15] Kok-Kwang Phoon,et al. CHARACTERIZATION OF MODEL UNCERTAINTIES FOR CANTILEVER RETAINING WALLS IN SAND , 2009 .
[16] C. Ou,et al. Building response and ground movements induced by a deep excavation , 2000 .
[17] Richard J. Finno,et al. Finite Element Analyses of HDR‐4 Excavation , 1991 .
[18] Youssef M. A. Hashash,et al. Simplified Model for Wall Deflection and Ground-Surface Settlement Caused by Braced Excavation in Clays , 2007 .
[19] Farrokh Nadim,et al. Tools and Strategies for Dealing with Uncertainty in Geotechnics , 2007 .
[20] D. R. Carder,et al. Long-term performance of an embedded cantilever retaining wall in stiff clay , 1989 .
[21] Chang-Yu Ou,et al. Performance of Diaphragm Wall Constructed Using Top-Down Method , 1998 .
[22] Johan V. Retief,et al. Characterization of Model Uncertainty in the Static Pile Design Formula , 2011 .
[23] Robert J. Mair. Developments in geotechnical engineering research: application to tunnels and deep excavations , 1993 .
[24] Youssef M A Hashash,et al. Analysis of deep excavations in clay , 1992 .
[25] Robert V. Whitman,et al. Organizing and evaluating uncertainty in geotechnical engineering , 2000 .
[26] Malcolm D. Bolton,et al. Stiffness of Clays and Silts: Modeling Considerations , 2014 .
[27] Malcolm D. Bolton,et al. Corrigendum: Strength mobilization in clays and silts , 2012 .
[28] M M Long,et al. RETAINING WALL BEHAVIOUR FOR A DEEP BASEMENT IN SINGAPORE MARINE CLAY , 1993 .
[29] B. Chandrasekaran,et al. Performance of Two Propped Diaphragm Walls in Stiff Residual Soils , 1997 .
[30] Vincent P. Drnevich,et al. Shear modulus and damping in soils , 1972 .
[31] R. O’Brien,et al. A Caution Regarding Rules of Thumb for Variance Inflation Factors , 2007 .
[32] D. K. Young,et al. The observational approach to design of a sheet-piled retaining wall , 1994 .
[33] Selim Altun,et al. Taguchi approach for optimization of the bleeding on cement-based grouts , 2005 .
[34] P. J. Vardanega,et al. Stiffness of clays and silts: Normalizing shear modulus and shear strain , 2013 .
[35] Spg Madabhushi,et al. Laboratory measurement of strength mobilisation in kaolin: link to stress history , 2012 .
[36] Malcolm D. Bolton,et al. Understanding ground deformation mechanisms for multi-propped excavation in soft clay , 2014 .
[37] Malcolm D. Bolton,et al. Ground movements due to deep excavations in Shanghai: Design charts , 2014 .
[38] Chang-Yu Ou,et al. Characteristics of ground surface settlement during excavation , 1993 .
[39] L. A. Wood,et al. Observations of a strutted diaphragm wall in London clay: a preliminary assessment , 1984 .
[40] J. A. Charles,et al. Behaviour of a propped embedded retaining wall in stiff clay at Bell Common Tunnel , 1984 .
[41] Charles Wang Wai Ng,et al. Determination of small-strain stiffness of Shanghai clay on prismatic soil specimen , 2012 .
[42] K. Phoon,et al. Characterisation of model uncertainties for laterally loaded rigid drilled shafts , 2005 .
[43] J. M. Duncan,et al. Nonlinear Analysis of Stress and Strain in Soils , 1970 .
[44] R. Peck. Deep excavations and tunnelling in soft ground , 1969 .
[45] William Powrie,et al. BEHAVIOUR OF DIAPHRAGM WALLS IN CLAY PRIOR TO COLLAPSE , 1988 .
[46] A. S. Osman,et al. A new design method for retaining walls in clay , 2004 .
[47] Malcolm D. Bolton,et al. Energy Conservation as a Principle Underlying Mobilizable Strength Design for Deep Excavations , 2011 .
[48] Mehmet Baris Darendeli,et al. Development of a new family of normalized modulus reduction and material damping curves , 2001 .
[49] R. Jardine,et al. The stiffness of natural London Clay , 2007 .
[50] Xuxin Tu,et al. Selected topics in numerical simulation of supported excavations , 2006 .
[51] Thomas Marcher,et al. Nonlinear FE-analysis of tunnel excavation – comparison of EC7 design approaches. Nichtlineare FE-Analysen im Tunnelbau – Vergleich der Nachweisverfahren des EC7 , 2010 .