CONCEPTUAL MODEL FOR GEOTHERMAL ENERGY CARIBBEAN

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CONCEPTUAL MODEL FOR GEOTHERMAL ENERGY CARIBBEAN ( conceptual-model-for-geothermal-energy-caribbean )

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De Marsily, G., (1986), Quantitative Hydrogeology. Academic Press, Inc, Orlando, FL. Dietrich, P., Helmig. R., Sauter, M., Htzl, H., Kngeter, J., and Teutsch, G., (2005), Flow and Transport in Fractured Porous Media, 15, 25, 34-35 Geothermal Italiana (1991) Exploration for geothermal resources in the Eastern Caribbean. Section D: The Island of Nevis. United Nations Department of Technical Cooperation for Development TCD CON 15/90 – RLA/87/037. Helmig, R. (1993). Theorie und Numerik der Mehrphansenstrmung in geklügtetporsen Medien. (Institut für Strmungsmechanik und Elecktronishes Rechnen im Bauwesen Hannover, Bericht; 34) (Zugl.: Hannover, Univ., Diss., 1993). Eigenverlag, Hannover. Hickman, S., M.D. Zoback and R. Benoit (1998), Tectonic controls on reservoir permeability in the Dixie Valley, Nevada, geothermal field, Proceedings 23rd Workshop on Geothermal Reservoir Engineering, Stanford University p. 291-298. Hutton CO (1965) The mineralogy and petrology of Nevis, Leeward Island, British West Indies. Fourth Caribbean Geological Conference, Trinidad: 383-388. & Nockolds SR (1977) The petrology of Nevis, Leeward Island, West Indies. Overseas Geology and Mineral Resources 52: 1-31. Huttrer G.W. (2010). 2010 Country Update for Eastern Caribbean Island Nations, Proceeding World Geothermal Congress 2010 Bali, Indonesia. Kolditz, O. (1997), Strmung, Stoff - und Wrmetransport im Kluftgestein. Gebr. Borntraeger, Berlin – Stuttgart. Incropera F.P., and D.P. De Witt, (1996), Fundamentals of Heat and Mass Transfer, 4th Edition,John Wiley & Sons, New York, p 239. Lockner, D.A. & N.M. Beeler (2002), “Rock failure and earthquakes,” International Handbook of Earthquakes and Engineering seismology, 81A, p. 505-537. Martin-Kaye PHA (1959) Reports on the geology of the Leeward and British Virgin Islands: Castries, St. Lucia. V oice Publication Company Limited: 117pp. Phillips, O.M. (1991), Flow and Reactions in Permeable Rocks. Cambridge University Press. Renshaw, C.E. (1996), Influence of sub-critical fracture growth on connectivity of fracture networks. Water Resource Research, 27, 2633- 2643. (1997), Mechanical controls on the spatial density of opening mode fracture networks. Geology, 25, 923-926. Robson G.R. & Willmore P.L. (1955), “Some heat measurements in West Indian Soufriere.” Bull. Volc: 13-39. Sanyal S.K., (2010)Future of Geothermal Energy, Proceeding the Thirty-Fifth Workshop on Geothermal Reservoir Engineering, Stanford University, SGP-TR-188. Shimo, M. & Long, J. (1987), A numerical study of transport parameters in fracture networks. In: Evans, D. D. & Nicholson, T. J. (eds) Flow and Transport Through Unsaturated Rock. Geophysical Monograph 42, American Geophysical Union, 121-132. Snow, D. (1969), Anisotropic permeability of fractured metamorphic rocks of the Front Range and implications to the Rocky Mountains Arsenal well. Colo. Sch. Mines, 63(1), 201-244 Tembe, S., D.A. Lockner, and T.-f. Wong (in press), Effect of clay content and mineralogy on frictional sliding behavior of simulated gouges: Binary and ternary mixtures of quartz, illite and montmorillonite, Journal of Geophysical Research. Tsang, Y. W. & Tsang, C.F. (1987). Channel model of flow through fractured media. Water Resources Research, 23(3), 467-479. White, F. (1999). Fluid Mechanics. McGraw-Hill, USA, 4th edition. Wollrath, J. (1990). Ein Strmungs- und Transportmodell für klüftiges Gestein und Untersuchungen zu homogenen Ersatzsystemen. Technical Report 28, Institut für Strmungmechanik und Elektronisches Rechnen im Bauwesen, Universitt Hannover. Zhang, X. & Sanderson, D.J. 1995. Anisotropic features of geometry and permeability in fractured rock masses. Engineering Geology, 40, 65-75 1996a. Numerical modeling of the effects of fault slip on fluid flow around extensional faults. Journal of Structural Geology 18, 109- 122. Zhang, X., Harkness, R. M. & Last, N. C. 1992. Evaluation of connectivity characteristics of naturally jointed rock masses. Engineering Geology, 33, 11-30

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