On the instability of offshore foundations: theory and mechanism
暂无分享,去创建一个
Fu-Ping Gao | Wen-Gang Qi | Jinhui Li | F. Gao | W. Qi | Cun Hu | Jinhui Li | Cun Hu
[1] Susan Gourvenec,et al. A generalised failure envelope for undrained capacity of circular shallow foundations under general loading , 2014 .
[2] Yinghui Tian,et al. Failure Mechanism and Bearing Capacity of Footings Buried at Various Depths in Spatially Random Soil , 2015 .
[3] K. Terzaghi. Theoretical Soil Mechanics , 1943 .
[4] M. Randolph. Design Considerations for Offshore Piles , 1983 .
[5] Guido Gottardi,et al. A centrifuge study on the effect of embedment on the drained response of shallow foundations under combined loading , 2011 .
[6] Mark Randolph,et al. Combined loading of skirted foundations , 1998 .
[7] Chun Fai Leung,et al. Improved Guidelines for the Prediction of Geotechnical Performance of Spudcan Foundations During Installation and Removal of Jack-up Units , 2009 .
[8] Walter Tollmien,et al. Über die Eindringungsfestigkeit (Härte) plastischer Baustoffe und die Festigkeit von Schneiden , 1961 .
[9] Xilin Xie,et al. Some studies on mechanics of continuous mediums viewed as differential manifolds , 2013 .
[10] Mark Cassidy,et al. Editorial: Special issue on offshore structure-soil interaction , 2015 .
[11] Guy T. Houlsby,et al. Undrained bearing capacity factors for conical footings on clay , 2003 .
[12] John P. Carter,et al. Numerical studies of the bearing capacity of shallow foundations on cohesive soil subjected to combined loading , 2000 .
[13] Roy E. Olson,et al. Performance of Suction Caissons in Sand and Clay , 2002 .
[14] Jon Tore Lieng,et al. Deep Penetrating Anchor: Further Development, Optimization And Capacity Verification , 2000 .
[15] Xiaowei Feng,et al. Effect of a surficial crust on mudmat capacity under fully three-dimensional loading , 2015 .
[16] Martijn Onderwater,et al. Local Scour and Protection of F3 Offshore GBS Platform , 2002 .
[17] L. Reese,et al. Analysis of Laterally Loaded Piles in Sand , 1974 .
[18] Wai-Fah Chen,et al. Bearing Capacity of Shallow Foundations , 1991 .
[19] Mark Randolph,et al. Performance of suction embedded plate anchors in permanent mooring applications , 2012 .
[20] L. Prandtl,et al. Hauptaufsätze: Über die Eindringungsfestigkeit (Härte) plastischer Baustoffe und die Festigkeit von Schneiden , 1921 .
[21] Varun,et al. A simplified model for lateral response of large diameter caisson foundations—Linear elastic formulation , 2009 .
[22] Mark Randolph,et al. Profile and frictional capacity of embedded anchor chains , 1995 .
[23] James A. Schneider,et al. A Review of Design Methods for Offshore Driven Piles in Siliceous Sand , 2005 .
[24] Chris M. Martin,et al. Applications of the lower and upper bound theorems of plasticity to collapse of circular foundations , 2001 .
[25] Hans Petter Jostad,et al. Foundation design of skirted foundations and anchors in clay , 1999 .
[26] Mark Randolph,et al. Effect of loading rate on the uplift capacity of plate anchors , 2008 .
[27] Mark Randolph,et al. Bearing capacity on sand overlying clay soils: a simplified conceptual model , 2013 .
[28] Soil flow mechanism around deeply embedded plate anchors during monotonic and sustained uplifts , 2015 .
[29] Shiyi Chen,et al. Local Reynolds number and thresholds of transition in shear flows , 2013 .
[30] B. Lehane,et al. Numerical derivation of CPT-based p–y curves for piles in sand , 2014 .
[31] Alan G. Young,et al. Foundation Performance of Offshore Jack-Up Drilling Rigs , 1984 .
[32] E. Dean. Predicting Punchthrough of Jackup Spudcans on Sand over Clay , 2013 .
[33] D. Jeng,et al. Ocean waves propagating over a porous seabed: Residual and oscillatory mechanisms , 2007 .
[34] Byron W. Byrne,et al. Response of stiff piles in sand to long-term cyclic lateral loading , 2010 .
[35] Christophe Gaudin,et al. Failure mechanisms of a spudcan penetrating next to an existing footprint , 2015 .
[36] Guy T. Houlsby,et al. Combined loading of spudcan foundations on clay: laboratory tests , 2000 .
[37] Bin Teng,et al. Full time-domain nonlinear coupled dynamic analysis of a truss spar and its mooring/riser system in irregular wave , 2014 .
[38] Ross W. Boulanger,et al. Observed Seismic Lateral Resistance of Liquefying Sand , 2000 .
[39] Harry G. Poulos,et al. Closure of "Behavior of Laterally Loaded Piles: I-Single Piles" , 1971 .
[41] Jie Han,et al. Analysis of Laterally Loaded Piles in Sand Considering Scour Hole Dimensions , 2014 .
[42] Jürgen Grabe,et al. Numerical investigation of bearing capacity due to spudcan penetration in sand overlying clay , 2012 .
[43] Susan Gourvenec,et al. Shape effects on the capacity of rectangular footings under general loading , 2007 .
[44] M. Cassidy,et al. A plasticity model to assess the keying of plate anchors , 2012 .
[45] Dong Wang,et al. Predicting peak resistance of spudcan penetrating sand overlying clay , 2014 .
[46] D. H. Edwards,et al. The bearing capacity of a circular footing under ‘punch-through’ failure , 2004 .
[47] Martin Achmus,et al. Behavior of monopile foundations under cyclic lateral load , 2009 .
[48] S. P. Singh,et al. Influence of Frequency on the Behaviour of Plate Anchors Subjected to Cyclic Loading , 2008 .
[49] Christophe Gaudin,et al. Influence of padeye offset on bearing capacity of three-dimensional plate anchors , 2015 .
[50] M. Cassidy,et al. Deterministic and probabilistic advances in the analysis of Spudcan behaviour , 2015 .
[51] C. Erbrich,et al. Installation of the Laminaria Suction Piles ? A Case History , 2002 .
[52] Mark Randolph,et al. Offshore Geotechnical Engineering , 2011 .
[53] Mark Randolph,et al. SCIENCE AND EMPIRICISM IN PILE FOUNDATION DESIGN , 2003 .
[54] Harry G. Poulos,et al. The Role of Analytical Geomechanics in Foundation Engineering , 1989 .
[55] Christophe Gaudin,et al. Predicting the undrained capacity of skirted spudcans under combined loading , 2013 .
[56] L. Bekken,et al. Lateral behavior of large diameter offshore monopile foundations for wind turbines , 2009 .
[57] Paul Doherty,et al. Laterally loaded monopile design for offshore wind farms , 2012 .
[58] John P. Carter,et al. A failure surface for circular footings on cohesive soils , 2010 .
[59] Mark Randolph,et al. Shaft Capacity of Driven Piles in Clay , 1985 .
[60] Qi Zhou,et al. Experimental study on the stability of plate anchors in clay under cyclic loading , 2015 .
[61] D. Menzies,et al. Spudcan penetration analysis for case histories in clay , 2014 .
[62] Mark Cassidy,et al. A plasticity model for spudcan foundations in soft clay , 2014 .
[63] R. N. Dass,et al. Suction force below plate anchors in soft clay , 1994 .
[64] Mark Cassidy,et al. Spudcan extraction from deep embedment in soft clay , 2014 .
[65] Rune Dahlberg. Observations of scour around offshore structures , 1983 .
[66] R. S. Merifield,et al. Rigorous plasticity solutions for the bearing capacity of two-layered clays , 1999 .
[67] J. Barber,et al. Beams on Elastic Foundations , 2011 .
[68] R B Peck,et al. THE BEARING CAPACITY OF CLAYS , 1952 .
[69] Lidija Zdravković,et al. New design methods for large diameter piles under lateral loading for offshore wind applications , 2015 .
[70] A. Fourie,et al. Studies of the influence of non-linear stress-strain characteristics in soil-structure interaction , 1986 .
[71] George Gazetas,et al. Winkler model for lateral response of rigid caisson foundations in linear soil , 2006 .
[72] Alexander M. Puzrin,et al. Upper bound limit analysis of circular foundations on clay under general loading , 2003 .
[73] KENNETH PEIRE,et al. GRAVITY BASE FOUNDATIONS FOR THE THORNTON BANK OFFSHORE WIND FARM , 2009 .
[74] Jie Han,et al. Scour effects on the response of laterally loaded piles considering stress history of sand , 2010 .
[75] C. Leung,et al. Centrifuge modelling of spudcan–pile interaction in soft clay , 2012 .
[76] A. P. Green. The plastic yielding of metal junctions due to combined shear and pressure , 1954 .
[77] M. Randolph,et al. The response of flexible piles to lateral loading , 1981 .
[78] M. Randolph,et al. Analysis of Suction Caisson Capacity in Clay , 2002 .
[79] M. Randolph,et al. Keying of rectangular plate anchors in normally consolidated clays , 2011 .
[81] Mark Randolph,et al. Effect of Strain Rate and Strain Softening on the Penetration Resistance of Spudcan Foundations on Clay , 2009 .
[82] Knut H. Andersen,et al. BEARING CAPACITY FOR FOUNDATIONS WITH CYCLIC LOADS , 1988 .
[83] Mark Randolph,et al. THE EFFECT OF EMBEDMENT DEPTH ON THE UNDRAINED RESPONSE OF SKIRTED FOUNDATIONS TO COMBINED LOADING , 1999 .
[84] Mark Randolph,et al. Recent advances in offshore geotechnics for deep water oil and gas developments , 2011 .
[85] Subrata K. Chakrabarti,et al. Handbook of Offshore Engineering , 2005 .
[86] M. Randolph,et al. Penetration of dynamically installed anchors in clay , 2013 .
[87] Jiachun Li,et al. Simulation of triaxial response of granular materials by modified DEM , 2014 .
[88] Fu-Ping Gao,et al. Elasto-plasticity and pore-pressure coupled analysis on the pullout behaviors of a plate anchor , 2015 .
[89] Mark Randolph,et al. Suction anchors for deepwater applications , 2005 .
[90] Chen Wang,et al. Reverse catenary equation of the embedded installation line and application to the kinematic model for drag anchors , 2013 .
[91] David Menzies,et al. Comparison of Jackup Rig Spudcan Penetration Methods in Clay , 2008 .
[92] John P. Carter,et al. Effects of long term loading on storm capacity of vertically loaded anchors , 2005 .
[93] Fu-Ping Gao,et al. Equilibrium scour depth at offshore monopile foundation in combined waves and current , 2014 .
[94] Richard J. S. Whitehouse,et al. Evaluating scour at marine gravity foundations , 2011 .
[95] Mark Randolph,et al. New mechanism-based design approach for spudcan foundations on stiff-over-soft clay , 2009 .
[96] J. D. Murff,et al. Undrained capacity of plate anchors under general loading. , 2010 .
[97] Guido Gottardi,et al. Plastic response of circular footings on sand under general planar loading , 1999 .
[98] Mark Randolph,et al. Cavity stability and bearing capacity of spudcan foundations on clay , 2006 .
[99] Mark Cassidy,et al. A plasticity model for the behaviour of footings on sand under combined loading , 2002 .
[100] Werner Rücker,et al. A numerical model for the transient analysis of offshore foundations under cyclic loading , 2014 .
[101] Xiaowei Feng,et al. Design approach for rectangular mudmats under fully three-dimensional loading , 2014 .
[102] Ben Zhao,et al. Post-installation pore-pressure changes around spudcan and long-term spudcan behaviour in soft clay , 2014 .
[103] Martin Achmus,et al. On the behavior of suction buckets in sand under tensile loads , 2014 .