A review on challenges in the assessment of geomechanical rock performance for deep geothermal reservoir development

Renewable and Sustainable Energy Reviews - Tập 82 - Trang 3972-3980 - 2018
Ingrid Tomac1, Martin Sauter2
1Structural Engineering, University of California San Diego, La Jolla, CA, USA
2Applied Geology, Georg-August-Universität Gӧttingen, Gӧttingen, Germany

Tài liệu tham khảo

Tester JW, Anderson B, Batchelor A, Blackwell D, DiPippo R, Drake E, et al. The future of geothermal energy: Impact of enhanced geothermal systems (EGS) on the United States in the 21st century. Massachusetts Inst Technol DOE Contract DE-AC07-05ID14517 Final Rep 2006. McCartney, 2016, Energy geotechnics: advances in subsurface energy recovery, storage, exchange, and waste management, Comput Geotech, 75, 244, 10.1016/j.compgeo.2016.01.002 Giardini, 2009, Geothermal quake risks must be faced, Nature, 462, 848, 10.1038/462848a Häring, 2008, Characterisation of the Basel 1 enhanced geothermal system, Geothermics, 37, 469, 10.1016/j.geothermics.2008.06.002 Trugman, 2016, A comparison of long‐term changes in seismicity at the Geysers, Salton Sea, and Coso geothermal fields, J Geophys Res Solid Earth, 10.1002/2015JB012510 Blewitt, 2003, Targeting of potential geothermal resources in the Great Basin from regional to basin-scale relationships between geodetic strain and geological structures, Geotherm … Coolbaugh, 2005, Geothermal systems in the Great Basin, western United States: modern analogues to the roles of magmatism, structure, and regional tectonics in the formation, Geol Soc Brott, 1976, Geothermal investigations in Idaho. Part 8. Heat flow study of the Snake River Plain region, Idaho, U S Dep Energy Brott, 1981, Thermal and tectonic implications of heat flow in the Eastern Snake River Plain, Idaho, J Geophys Res, 86, 11709, 10.1029/JB086iB12p11709 Blackwell, 1990, Heat flow in the Oregon Cascade Range and its correlation with regional gravity, Curie point depths, and geology, J Geophys Res, 95, 19475, 10.1029/JB095iB12p19475 Reiter, 1979, 253 Baisch, 2009, Investigation of fault mechanisms during geothermal reservoir stimulation experiments in the Cooper Basin, Australia, Bull Seismol Soc Am, 99, 148, 10.1785/0120080055 Albaric, 2014, Monitoring of induced seismicity during the first geothermal reservoir stimulation at Paralana, Australia, Geothermics, 52, 120, 10.1016/j.geothermics.2013.10.013 Dezayes C, Genter A, Thinon I, Courrioux G, Tourlière B. Geothermal potential assessment of clastic triassic reservoirs (Upper Rhine Graben, France). 32nd Work. Geotherm. Reserv. Eng., n.d., p. 28–30. Genter, 2010, Contribution of the exploration of deep crystalline fractured reservoir of Soultz to the knowledge of enhanced geothermal systems (EGS), Comptes Rendus Geosci, 342, 502, 10.1016/j.crte.2010.01.006 Baria, 1999, European HDR research programme at Soultz-sous-Forêts (France) 1987–1996, Geothermics, 28, 655, 10.1016/S0375-6505(99)00036-X Wessling, 2009, Pressure analysis of the hydromechanical fracture behaviour in stimulated tight sedimentary geothermal reservoirs, Geothermics, 38, 211, 10.1016/j.geothermics.2008.10.003 Deichmann, 2009, Earthquakes Induced by the stimulation of an enhanced geothermal system below Basel (Switzerland), Seismol Res Lett, 80 Blackwell, 2006, Assessment of the enhanced geothermal system resource base of the United States, Nat Resour Res, 15, 283, 10.1007/s11053-007-9028-7 Huang, 2010, Geothermal energy stuck between a rock and a hot place, Nature, 463, 293, 10.1038/463293d Bower, 1997, A numerical model for thermo-hydro-mechanical coupling in fractured rock, Int J Rock Mech Min Sci, 34, 1201, 10.1016/S1365-1609(97)80071-8 Gelet, 2012, A thermo‐hydro‐mechanical coupled model in local thermal non‐equilibrium for fractured HDR reservoir with double porosity, J Geophys Res Solid Earth, 117 Hicks, 1996, A hydro-thermo-mechanical numerical model for HDR geothermal reservoir evaluation, Int. J. Rock Mech. Min. Sci. Geomech. Abstr., 33, 499, 10.1016/0148-9062(96)00002-2 Kohl, 1995, Coupled hydraulic, thermal and mechanical considerations for the simulation of hot dry rock reservoirs, Geothermics, 24, 345, 10.1016/0375-6505(95)00013-G Ghassemi, 2005, Integral equation solution of heat extraction‐induced thermal stress in enhanced geothermal reservoirs, Int J Numer Anal Methods Geomech, 29, 829, 10.1002/nag.440 Ghassemi, 2006, Porothermoelastic analysis of the response of a stationary crack using the displacement discontinuity method, J Eng Mech, 132, 26, 10.1061/(ASCE)0733-9399(2006)132:1(26) Ojala, 2004, Loading rate dependence of permeability evolution in porous aeolian sandstones, J Geophys Res Solid Earth, 109 Heuze, 1983, High-temperature mechanical, physical and thermal properties of granitic rocks—a review, Int. J. Rock Mech. Min. Sci. Geomech. Abstr., 20, 3, 10.1016/0148-9062(83)91609-1 Robert, 1979, Crack-crack and crack-pore interactions in stressed granite, Int J Rock Mech Min Sci Geomech Abstr, 16, 37, 10.1016/0148-9062(79)90773-3 Kranz, 1979, Crack-crack and crack-pore interactions in stressed granite, Int. J. Rock Mech. Min. Sci. Geomech. Abstr., 16, 37, 10.1016/0148-9062(79)90773-3 Kranz, 1983, Microcracks in rocks: a review, Tectonophysics, 100, 449, 10.1016/0040-1951(83)90198-1 Bahr, 2010, Scaling behavior of thermal shock crack patterns and tunneling cracks driven by cooling or drying, J Mech Phys Solids, 58, 1411, 10.1016/j.jmps.2010.05.005 Corson, 2009, Thermal fracture as a framework for quasi-static crack propagation, Int J Fract, 158, 1, 10.1007/s10704-009-9361-4 Kim, 2015, Hydro-thermo-mechanical analysis during injection of cold fluid into a geologic formation, Int J Rock Mech Min Sci, 77, 220, 10.1016/j.ijrmms.2015.04.010 Lutz SJ, Hickman S, Davatzes N, Zemach E, Drakos P, Robertson-Tait A. Rock mechanical testing and petrologic analysis in support of well stimulation activities at the Desert Peak Geothermal Field, Nevada. Proc. 35th Work. Geotherm. Reserv. Eng., n.d. Bro, 1997, Analysis of multistage triaxial test results for a strain-hardening rock, Int J Rock Mech Min Sci, 34, 143, 10.1016/S1365-1609(97)80040-8 Diederichs, 2004, Damage initiation and propagation in hard rock during tunnelling and the influence of near-face stress rotation, Int J Rock Mech Min Sci, 41, 785, 10.1016/j.ijrmms.2004.02.003 Fang, 2002, Application of a local degradation model to the analysis of brittle fracture of laboratory scale rock specimens under triaxial conditions, Int J Rock Mech Min Sci, 39, 459, 10.1016/S1365-1609(02)00036-9 Cho, 2003, Strain-rate dependency of the dynamic tensile strength of rock, Int J Rock Mech Min Sci, 40, 763, 10.1016/S1365-1609(03)00072-8 Lin, 2010, Localized rotation of principal stress around faults and fractures determined from borehole breakouts in hole B of the Taiwan Chelungpu-fault Drilling Project (TCDP), Tectonophysics, 482, 82, 10.1016/j.tecto.2009.06.020 Zoback, 1985, Well bore breakouts and in situ stress, J Geophys Res Solid Earth, 90, 5523, 10.1029/JB090iB07p05523 Majer, 2007, Induced seismicity associated with enhanced geothermal systems, Geothermics, 36, 185, 10.1016/j.geothermics.2007.03.003 Kisslinger, 1976, A review of theories of mechanisms of induced seismicity, Eng Geol, 10, 85, 10.1016/0013-7952(76)90014-4 Ghassemi, 2007, A 3-D study of the effects of thermomechanical loads on fracture slip in enhanced geothermal reservoirs, Int J Rock Mech Min Sci, 44, 1132, 10.1016/j.ijrmms.2007.07.016 Martin, 1972, Time‐dependent crack growth in quartz and its application to the creep of rocks, J Geophys Res, 77, 1406, 10.1029/JB077i008p01406 Talwani, 1984, Pore pressure diffusion and the mechanism of reservoir-induced seismicity, Pure Appl Geophys, 122, 947, 10.1007/BF00876395 Baisch, 2006, Induced seismicity during the stimulation of a geothermal HFR reservoir in the Cooper Basin, Australia, Bull Seismol Soc Am, 96, 2242, 10.1785/0120050255 Baujard, 2014, Large magnitude events during injections in geothermal reservoirs and hydraulic energy: a heuristic approach, Geothermics, 52, 140, 10.1016/j.geothermics.2014.07.002 Hazzard, 2004, Numerical investigation of induced cracking and seismic velocity changes in brittle rock, Geophys Res Lett, 31, L01604, 10.1029/2003GL019190 Hazzard JF, Young RP, Oates SJ. Numerical modeling of seismicity induced by fluid injection in a fractured reservoir, n.d., p. 1023–30. Moeck, 2009, Slip tendency analysis, fault reactivation potential and induced seismicity in a deep geothermal reservoir, J Struct Geol, 31, 1174, 10.1016/j.jsg.2009.06.012 Adams, 1992, Thermal stabilities of aromatic acids as geothermal tracers, Geothermics, 21, 323, 10.1016/0375-6505(92)90085-N Rose, 2001, The application of the polyaromatic sulfonates as tracers in geothermal reservoirs, Geothermics, 30, 617, 10.1016/S0375-6505(01)00024-4 Sanjuan, 2006, Tracer testing of the geothermal heat exchanger at Soultz-sous-Forêts (France) between 2000 and 2005, Geothermics, 35, 622, 10.1016/j.geothermics.2006.09.007 Nottebohm, 2012, Tracer design for tracking thermal fronts in geothermal reservoirs, Geothermics, 43, 37, 10.1016/j.geothermics.2012.02.002 Horne, 1983, Dispersion in tracer flow in fractured geothermal systems, Geophys Res Lett, 10, 289, 10.1029/GL010i004p00289 Maier, 2015, Temperature determination using thermo-sensitive tracers: experimental validation in an isothermal column heat exchanger, Geothermics, 53, 533, 10.1016/j.geothermics.2014.09.007 Ghergut I, Sauter M, Behrens H, Licha T. Single-Well Dual-Tracer Spikings during EGS Creation in Northern German Sedimentary Layers. … 2009:9–11. Karmakar, 2015, EGS in Sedimentary Basins: sensitivity of Early-flowback Tracer Signals to Induced Fracture Parameters, Energy Procedia, 76, 223, 10.1016/j.egypro.2015.07.906 Ghergut, 2016, Petrothermal and aquifer-based EGS in the Northern-German Sedimentary Basin, investigated by conservative tracers during single-well injection-flowback and, Geothermics, 10.1016/j.geothermics.2016.01.015 Singurindy, 2004, Competition among flow, dissolution, and precipitation in fractured carbonate rocks, Dyn FLUIDS Fract ROCK, 81 Faybishenko B, Witherspoon PA, Bodvarsson GS, Gale J. Emerging Issues in Fractured‐Rock Flow and Transport Investigations: Introduction and Overview. Wiley Online Library; 2005. Gale, 2004, Using fracture pore space geometry to assess degassing and scaling relationships in fractured rocks, Dyn FLUIDS Fract ROCK, 25 Tomac, 2014, Fluid lubrication effects on particle flow and transport in a channel, Int J Multiph Flow, 65, 143, 10.1016/j.ijmultiphaseflow.2014.04.007 Tomac I, Gutierrez M. Micro-Mechanics of Hydro-Thermo-Mechanical Fracture Propagation in Granite. 48th US Rock Mech Symp 2014. Tomac I. Micro-mechanical aspects of hydraulic fracture propagation and proppant flow and transport for stimulation of enhanced geothermal systems--A discrete element study. Colorado School of Mines; 2014. Tomac, 2015, Formulation and implementation of coupled forced heat convection and heat conduction in DEM, Acta Geotech, 10, 421, 10.1007/s11440-015-0400-1 Tomac, 2016, Coupled hydro-thermo-mechanical modeling of hydraulic fracturing in quasi-brittle rocks using BPM-DEM, J Rock Mech Geotech Eng Neuman, 2005, Trends, prospects and challenges in quantifying flow and transport through fractured rocks, Hydrogeol J, 13, 124, 10.1007/s10040-004-0397-2 Llanos, 2015, Simulation of the Habanero enhanced geothermal system (EGS), Australia, Simulation, 19, 25 Hoek, 1967 Mair, 2002, Influence of confining pressure on the mechanical and structural evolution of laboratory deformation bands, Geophys Res Lett, 29, 44, 10.1029/2001GL013964 Milsch, 2008, A new apparatus for long-term petrophysical investigations on geothermal reservoir rocks at simulated in-situ conditions, Transp Porous Media, 74, 73, 10.1007/s11242-007-9186-4 Peng, 2015, A model for characterizing crack closure effect of rocks, Eng Geol, 189, 48, 10.1016/j.enggeo.2015.02.004 Klein, 2004, A pore crack model for the mechanical behaviour of porous granular rocks in the brittle deformation regime, Int J Rock Mech Min Sci, 41, 975, 10.1016/j.ijrmms.2004.03.003 Bésuelle, 2000, Experimental characterisation of the localisation phenomenon inside a Vosges sandstone in a triaxial cell, Int J Rock Mech Min Sci, 37, 1223, 10.1016/S1365-1609(00)00057-5 Pineda JA, Romero E, Alonso EE, Pérez T. A new high-pressure triaxial apparatus for inducing and tracking hydro-mechanical degradation of clayey rocks. ASTM Geotech Test J n.d. Zhao, 2015, Deformation and instability failure of borehole at high temperature and high pressure in hot dry rock exploitation, Renew Energy, 77, 159, 10.1016/j.renene.2014.11.086 Youn, 2010, Multi-stage triaxial test on brittle rock, Int J Rock Mech Min Sci, 47, 678, 10.1016/j.ijrmms.2009.12.017 Crawford BR, Smart BGD. The influence of stress anisotropy on horizontal well performance predicted via special core analysis under true triaxial conditions. SPE Annu. Tech. Conf. Exhib., Society of Petroleum Engineers; n.d. Smart B, Crawford B. An innovative new cell for testing rock core under true triaxial stress states. Soc. Core Anal. 7th Ann. Tech. Conf, n.d. Mogi, 1967, Effect of the intermediate principal stress on rock failure, J Geophys Res, 72, 5117, 10.1029/JZ072i020p05117 Mogi, 1971, Fracture and flow of rocks under high triaxial compression, J Geophys Res, 76, 1255, 10.1029/JB076i005p01255 Wiebols, 1968, An energy criterion for the strength of rock in polyaxial compression, Int. J. Rock Mech. Min. Sci. Geomech. Abstr., 5, 529, 10.1016/0148-9062(68)90040-5 Haimson, 2000, A new true triaxial cell for testing mechanical properties of rock, and its use to determine rock strength and deformability of Westerly granite, Int J Rock Mech Min Sci, 37, 285, 10.1016/S1365-1609(99)00106-9 Hojem, 1968, The design and construction of a triaxial and polyaxial cell for testing rock specimens, S Afr Mech Eng, 18, 57 Jaeger, 2009 Chang, 2000, True triaxial strength and deformability of the German Continental Deep Drilling Program (KTB) deep hole amphibolite, J Geophys Res Solid Earth, 105, 18999, 10.1029/2000JB900184 Lee, 2011, True triaxial strength, deformability, and brittle failure of granodiorite from the San Andreas Fault Observatory at Depth, Int J Rock Mech Min Sci, 48, 1199, 10.1016/j.ijrmms.2011.08.003 Yun, 2010, Experimental investigation into biaxial compressive strength of granite, Int J Rock Mech Min Sci, 47, 334, 10.1016/j.ijrmms.2009.11.004 Ko, 1974, Three-dimensional mechanical characterization of anisotropic composites, J Compos Mater, 8, 178, 10.1177/002199837400800206 He M, Sousa LR. Experiments on rock burst and its control. In: Third Australasian ground control in mining conference, Sidney, Sidney; 2014, p. 19–31. He, 2012, A modified true triaxial test system that allows a specimen to be unloaded on one surface, True Triaxial Test Rocks, 4, 251 Kun, 2015, Failure properties of rocks in true triaxial unloading compressive test, Trans Nonferrous Met Soc China, 25, 571, 10.1016/S1003-6326(15)63639-1 Frash, 2014, True-triaxial apparatus for simulation of hydraulically fractured multi-borehole hot dry rock reservoirs, Int J Rock Mech Min Sci, 70, 496, 10.1016/j.ijrmms.2014.05.017 Soma, 1997, Identification of structures within the deep geothermal reservoir of the Kakkonda field, Japan, by a reflection method using acoustic emission as a wave source, Geothermics, 26, 43, 10.1016/S0375-6505(96)00029-6 Soma, 2002, Reflection technique in time-frequency domain using multicomponent acoustic emission signals and application to geothermal reservoirs, Geophysics, 67, 928, 10.1190/1.1484535 Yong, 1980, Thermally induced acoustic emission in westerly granite, Geophys Res Lett, 7, 1089, 10.1029/GL007i012p01089 Wieser, 2015, Acoustic Emission Technique to Detect Micro Cracking During Uniaxial Compression of Brittle Rocks, 6, 465 Warpinski, 2009, Microseismic monitoring: inside and out, J Pet Technol, 61, 80, 10.2118/118537-JPT Hampton JC. Laboratory hydraulic fracture characterization using acoustic emission. Colorado School of Mines, 2012. Hu L, Ghassemi A. Laboratory Scale Investigation of Enhanced Geothermal Reservoir Stimulation. ARMA-2016-258. Lockner D. The role of acoustic emission in the study of rock fracture. Int. J. Rock Mech. Min. Sci. Geomech. Abstr., vol. 30, Elsevier; n.d., p. 883–99. Ohnaka M. Acoustic emission during creep of brittle rock. Int. J. Rock Mech. Min. Sci. Geomech. Abstr., vol. 20, Elsevier; n.d., p. 121–34. Mayr, 2011, Acoustic emission induced by pore-pressure changes in sandstone samples, Geophysics, 76, MA21, 10.1190/1.3569579 Yao M, Rong G, Zhou C, Peng J. Effects of Thermal Damage and Confining Pressure on the Mechanical Properties of Coarse Marble. Rock Mech Rock Eng n.d.:1–12. Majer EL, Doe TW. Studying hydrofractures by high frequency seismic monitoring. Int. J. Rock Mech. Min. Sci. Geomech. Abstr., vol. 23, Elsevier; n.d., p. 185–99. Feignier, 1992, Moment tensor inversion of induced microseisnmic events: evidence of non‐shear failures in the− 4<M<− 2 moment magnitude range, Geophys Res Lett, 19, 1503, 10.1029/92GL01130 Goodfellow, 2014, A laboratory acoustic emission experiment under in situ conditions, Geophys Res Lett, 41, 3422, 10.1002/2014GL059965 McLaskey, 2014, Laboratory generated M-6 earthquakes, Pure Appl Geophys, 171, 2601, 10.1007/s00024-013-0772-9 Smart, 1999, A rock test cell with true triaxial capability, Geotech Geol Eng, 17, 157, 10.1023/A:1008969308711 Crawford, 1995, Strength characteristics and shear acoustic anisotropy of rock core subjected to true triaxial compression, Int. J. Rock Mech. Min. Sci. Geomech. Abstr., 32, 189, 10.1016/0148-9062(94)00051-4 McDermott, 2006, Simulation of heat extraction from crystalline rocks: the influence of coupled processes on differential reservoir cooling, Geothermics, 35, 321, 10.1016/j.geothermics.2006.05.002 Sauter, 2005, Characterization of the hydraulic properties of fractured rock aquifers, 5 McDermott, 2005, Flow and transport experiments conducted on laboratory cylinders, 127 McDermott, 2005, Preparation of fracture porous bench scale samples for conducting flow and transport experiments, 103 McDermott, 2005, The multi-shell model- a conceptual model approach, 305