Page 318 - Geothermal Energy Systems Exploration, Development, and Utilization
P. 318
294 5 Geothermal Reservoir Simulation
Bachler, D. and Kohl, T. (2005) Coupled HDR reservoir. Geothermics, 35(5–6),
thermal-hydraulic-chemical modelling 607–621.
of enhanced geothermal systems. Geo- Bear, J. (1972) Dynamics of Fluids in
physical Journal International, 161(2), Porous Media, Elsevier, 764 p.
533–548. Bear, J. (1991) Modelling transport phe-
Baisch, S., Weidler, R., Voeroes, R., Ten- nomena in porous media. Convect Heat
zer, H., and Teza, D. (2004) Improv- Mass Transfer Porous Media, 7, 69.
ing Hydraulic Simulation Efficiency Bernabe, Y. (1987) The effective pressure
by Means of Real Time Monitoring. law for permeability during pore pres-
Proceedings of the 29th Workshop on sure and confining pressure cycling
Geothermal Reservoir Engineering,Stan- of several crystalline rocks. Journal of
ford University, pp. 209–215. Geophysical Research, 92, 649–657.
Barenblatt, G., Entov, V., and Ryzhik, Bernabe, Y. (1988) Comparison of the
V. (1990) Theory of Fluid Flows through
effective pressure law for permeabil-
Natural Rocks,KluwerAcademicPub-
ity and resistivity formation factor in
lishers.
chelmsford granite. Pure and Applied
Baria, R., Baumg¨ artner, J., Rummel,
Geophysics, 127(4), 607–625.
F Pine, R.J., and Sato, Y. (1999)
Birkholzer, J., Rutqvist, J., Sonnenthal,
HDR/HWR reservoirs: concepts, un-
E., Barr, D. (2008) Decovalex - Task
derstanding and creation. Geothermics
D: long-term permeability changes due
28, pp. 533–552.
to THC and THM processes. Techni-
Baria, R., Jung, R., Tischner, T.,
cal Report 2008:43, Swedish Nuclear
Nicholls, J., Michelet, S., Sanjuan, B.,
Power Inspectorate, Stockholm.
Soma, N., Asanuma, H., Dyer, B.,
Bl¨ ocher, M.G., Zimmermann, G., and
and Garnish, J. (2006) Creation of an
Milsch, H. (2009) Impact of poroelastic
HDR/EGS reservoir at 5000 m depth
response of sandstones on geothermal
at the European HDR project, Proceed-
power production. Pure and Applied
ings of the 31st Workshop on Geothermal
Geophysics, 166(5–7), 1107–1123. Spe-
Reservoir Engineering, Stanford Univer-
cial Volume.
sity, Stanford, CA, USA, 8 p.
Bower, K. and Zyvoloski, G. (1997) A
Bartels, J. and Iffland, J. (2000) Hy-
numerical model for thermo-hydro-
draulic, Thermal, and Mechanical Be-
mechanical coupling in fractured rock.
havior of Geothermal Aquifers under
Exploitation: Analysis and Assessment International Journal of Rock Mechanics
of Petrographical / Petrophysical and and Mining Sciences, 34(8), 1201–1211.
Hydrochemical Data and Investiga- Brown, S. (1987) Fluid flow through rock
tionsasWell asSimulations.Project joints: the effect of surface roughness.
Final Report BMBF-0326995D, Lan- Journal of Geophysical Research, 92(B2),
desamt f¨ ur Umwelt, Naturschutz und 1337–1347.
Geologie Mecklenburg-Vorpommern, Bruel, D. (1995a) Heat extraction mod-
German. elling from forced fluid flow through
Baujard, C. and Bruel, D. (2006) Nu- stimulated fractured rock masses: ap-
merical study of the impact of fluid plication to the Rosemanowes Hot
density on the pressure distribution Dry Rock reservoir. Geothermics, 24(3),
and stimulated volume in the Soultz 361–374.