TY - JOUR
T1 - Geothermal reservoir simulation for a complex model
AU - Fukuda, Michihiro
AU - Itoi, Ryuichi
AU - Koga, Akito
PY - 1988/12/1
Y1 - 1988/12/1
N2 - Using a complex model consisting of lumped-parameter reservoirs and a fault zone, all connected by aquifers, a geothermal reservoir simulation was carried out by changing the permeability of the aquifer. The results indicate that the permeability has a considerable effect on mutual interferences among reservoirs. It is also shown that the pressures of the producing reservoirs show steep drops in the compressed water condition, and comparatively gentle drops in the saturated condition. While, the temperatures show smooth-curved drops in the both conditions. The compressibility of the water is so small that even a small mass decrease in the reservoir, i.e. density decrease, causes a steep pressure drop, and the pressure in the saturated condition does not drop so steeply, due to the volumetric expansion, as that in the compressed water condition.
AB - Using a complex model consisting of lumped-parameter reservoirs and a fault zone, all connected by aquifers, a geothermal reservoir simulation was carried out by changing the permeability of the aquifer. The results indicate that the permeability has a considerable effect on mutual interferences among reservoirs. It is also shown that the pressures of the producing reservoirs show steep drops in the compressed water condition, and comparatively gentle drops in the saturated condition. While, the temperatures show smooth-curved drops in the both conditions. The compressibility of the water is so small that even a small mass decrease in the reservoir, i.e. density decrease, causes a steep pressure drop, and the pressure in the saturated condition does not drop so steeply, due to the volumetric expansion, as that in the compressed water condition.
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M3 - Conference article
AN - SCOPUS:0024183484
SN - 0193-5933
VL - 12
SP - 457
EP - 460
JO - Transactions - Geothermal Resources Council
JF - Transactions - Geothermal Resources Council
T2 - New Horizons
Y2 - 9 October 1988 through 12 October 1988
ER -