Numerical modelling of energy piles in saturated sand subjected to thermo-mechanical loads
Tài liệu tham khảo
Laloui, 2003, Comportement d’un pieu bi-fonction, fondation et échangeur de chaleur, Can Geotech J., 40, 388, 10.1139/t02-117
Bourne-Webb, 2009, Energy pile test at Lambeth College, London: geotechnical and thermodynamic aspects of pile response to heat cycles, Géotechnique, 59, 237, 10.1680/geot.2009.59.3.237
Brandl, 2006, Energy foundations and other thermo-active ground structures, Géotechnique, 56, 81, 10.1680/geot.2006.56.2.81
McCartney, 2012, Strain Distributions in full-scale energy foundations, DFI J., 6, 26, 10.1179/dfi.2012.008
Murphy, 2014, Evaluation of thermal and thermo-mechanical behavior of full-scale energy foundations, Acta Geotech., 9, 1
KD Murphy, JS McCartney, KS Henry, Thermo-Mechanical Characterization of a Full-Scale Energy Foundation From Soil Behavior Fundamentals to Innovations. Atlanta, Georgia, United States: Geotechnical Engineering; 2014: 617–628.
Suryatriyastuti, 2012, Understanding the temperature-induced mechanical behaviour of energy pile foundations, Renew Sustain Energy Rev., 16, 3344, 10.1016/j.rser.2012.02.062
Bodas Freitas, 2013, The response of energy foundations under thermo-mechanical loading, 3347
Knellwolf, 2011, Geotechnical analysis of heat exchanger piles, J Geotech Geoenviron Eng., 137, 890, 10.1061/(ASCE)GT.1943-5606.0000513
Mimouni, 2014, Towards a secure basis for the design of geothermal piles, Acta Geotech., 9, 355, 10.1007/s11440-013-0245-4
Laloui, 2006, Experimental and numerical investigations of the behaviour of a heat exchanger pile, Int J Numer Anal Methods Geomech., 30, 763, 10.1002/nag.499
Olgun, 2014, Thermo-mechanical radial expansion of heat exchanger piles and possible effects on contact pressures at pile–soil interface, Géotech Lett., 4, 170, 10.1680/geolett.14.00018
Saggu, 2014, Thermal analysis of energy piles in sand, Geomech and Geoeng., 1
Kalantidou, 2012, Preliminary study on the mechanical behaviour of heat exchanger pile in physical model, Géotechnique, 62, 1047, 10.1680/geot.11.T.013
Yavari, 2014, Experimental study on the mechanical behaviour of a heat exchanger pile using physical modelling, Acta Geotech., 9, 385, 10.1007/s11440-014-0310-7
Goode, 2014, Centrifuge modeling of energy foundations in sand, 729
McCartney, 2011, Impact of heat exchange on side shear in thermo-active foundations, 488
Stewart, 2012, Strain Distributions in Centrifuge Model Energy Foundations, 25
Kramer, 2014, Performance of a model geothermal pile in sand, 771
Wang, 2011, Preliminary observations from laboratory scale model geothermal pile subjected to thermal-mechanical loading, 430
Wang, 2012, Field and laboratory investigation of a heat exchanger pile, 4396
Ng, 2014, Centrifuge modelling of heating effects on energy pile performance in saturated sand, Can Geotech J., 10.1139/cgj-2014-0301
Lambe, 1973, Predictions in soil engineering, Géotechnique, 23, 151, 10.1680/geot.1973.23.2.151
Schofield, 1980, Cambridge geotechnical centrifuge operations, Géotechnique, 30, 227, 10.1680/geot.1980.30.3.227
Ko, 1988, Summary of the state-of-the-art in centrifuge model testing, 11
Taylor, 1995
Bolton, 1987, Discussion on The strength and dilatancy of sands, Géotechnique, 37, 219, 10.1680/geot.1987.37.2.219
Gui, 1998, Guidelines for cone penetration tests in sand, 155
American Society for Testing and Materials ASTM. ASTM D1143 / D1143M - 07 Standard Test Methods for Deep Foundations Under Static Axial Compressive Load. West Conshohocken, PA, USA. 2013.
Charlier, 1987
Collin, 2003
Terzaghi, 1923, Die berechnung der durchlassigkeitsziffer des tones aus dem verlauf der hydrodynamischen spannungserscheinungen, 125
Thomas, 1994, A nonlinear, 2-dimensional, potential-based analysis of coupled heat and mass-transfer in a porous-medium, Internat J Numer Methods Engrg., 37, 3707, 10.1002/nme.1620372108
Coulomb C. Essai sur une application des règles de maximis et minimis a quelques problémes de statique, relatifs a l’architecture. Mémoires de Mathématique de l’Académie Royale des Sciences. Paris. 1773.
Prager, 1949, Recent developments in the mathematical theory of plasticity, J Appl Phys., 20, 10.1063/1.1698348
Potts, 2001
Potts, 2001
Jaky, 1944, The coefficient of earth pressure at rest, J Soc Hungar Archit Eng., 78, 355
Saxena, 1989, Dynamic moduli and damping ratios for Monterey No. 0 sand by resonant column tests, Soils Found., 29, 37, 10.3208/sandf1972.29.2_37
Ishibashi, 1993, Unified dynamic shear moduli and damping ratios of sand and clay, Soils Found., 33, 182, 10.3208/sandf1972.33.182
AnhDan, 2003, Anisotropic deformation properties of dense granular soils by large-scale true triaxial tests, Deform Charact Geomater., 1, 305
Ishihara, 1993, Liquefaction and flow failure during earthquakes, Géotechnique., 43, 351, 10.1680/geot.1993.43.3.351
Chakraborty, 2010, Dilatancy and shear strength of sand at low confining pressures, J Geotech Geoenviron Eng., 136, 527, 10.1061/(ASCE)GT.1943-5606.0000237
Bolton, 1986, The strength and dilatancy of sands, Géotechnique., 36, 65, 10.1680/geot.1986.36.1.65
Tarnawski, 2011, Thermal conductivity of standard sands II. Saturated conditions, Int J Thermophys., 32, 984, 10.1007/s10765-011-0975-1
Mitchell, 2005
Falser, 2012, Increased gas production from hydrates by combining depressurization with heating of the wellbore, Energy & Fuels., 26, 6259, 10.1021/ef3010652
Kishida, 1987, Tests of the interface between sand and steel in the simple shear apparatus, Géotechnique., 37, 45, 10.1680/geot.1987.37.1.45
De Nicola, 1999, Centrifuge modelling of pipe piles in sand under axial loads, Géotechnique., 49, 295, 10.1680/geot.1999.49.3.295
Di Donna, 2014
Wang, 2008, Performance study of underground thermal storage in a solar-ground coupled heat pump system for residential buildings, Energy Build., 40, 1278, 10.1016/j.enbuild.2007.11.009
Bi, 2004, Solar and ground source heat-pump system, Appl Energy., 78, 231, 10.1016/j.apenergy.2003.08.004
Bi, 2005, Heat source performance for solar-ground source heat pump, J Energy Inst., 74, 185, 10.1179/174602205X68333
Zogou, 2007, Optimization of thermal performance of a building with ground source heat pump system, Energy Convers Manage., 48, 2853, 10.1016/j.enconman.2007.07.012
Amatya, 2012, Thermo-mechanical behaviour of energy piles, Géotechnique., 62, 503, 10.1680/geot.10.P.116
Ng, 2001, New failure load criterion for large diameter bored piles in weathered geomaterials, J Geotech Geoenviron Eng., 127, 488, 10.1061/(ASCE)1090-0241(2001)127:6(488)