Geothermal Reservoir Engineering Research At Stanford University First Annual Report October 1 1980 September 30 1981 PDF Download

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Geothermal Reservoir Engineering Research at Stanford University. First Annual Report, October 1, 1980-September 30, 1981

Geothermal Reservoir Engineering Research at Stanford University. First Annual Report, October 1, 1980-September 30, 1981
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Release: 1981
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The work on energy extraction experiments concerns the efficiency with which the in-place heat and fluids can be produced. The work on noncondensable gas reservoir engineering covers both the completed and continuing work in these two interrelated research areas: radon emanation from the rock matrix of geothermal reservoirs, and radon and ammonia variations with time and space over geothermal reservoirs. Cooperative research programs with Italy and Mexico are described. The bench-scale experiments and well test analysis section covers both experimental and theoretical studies. The small core model continues to be used for the study of temperature effects on absolute permeability. The unconsolidated sand study was completed at the beginning of this contract period. The Appendices describe some of the Stanford Geothermal program activities that results in interactions with the geothermal community. These occur in the form of SGP Technical Reports, presentations at technical meetings and publications in the open literature.


Geothermal-reservoir Engineering Research at Stanford University. Second Annual Report, October 1, 1981-September 30, 1982

Geothermal-reservoir Engineering Research at Stanford University. Second Annual Report, October 1, 1981-September 30, 1982
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Release: 2005
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Progress in the following tasks is discussed: heat extraction from hydrothermal reservoirs, noncondensable gas reservoir engineering, well test analysis and bench-scale experiments, DOE-ENEL Cooperative Research, Stanford-IIE Cooperative Research, and workshop and seminars. (MHR).


Energy Research Abstracts

Energy Research Abstracts
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Total Pages: 536
Release: 1983
Genre: Power resources
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Geothermal Energy Update

Geothermal Energy Update
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Total Pages: 468
Release: 1982-12
Genre: Geothermal engineering
ISBN:

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Geothermal Reservoir Engineering Research at Stanford University. Third Annual Report for the Period October 1, 1982-September 30, 1983

Geothermal Reservoir Engineering Research at Stanford University. Third Annual Report for the Period October 1, 1982-September 30, 1983
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Release: 2005
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Progress is reported in the following areas: heat extraction from hydrothermal reservoirs; radon reservoir engineering; well test analysis and bench scale experiments; field applications; workshop, seminars, and technical information; reinjection technology; and seismic monitoring of vapor/liquid interfaces. (MHR).


Government Reports Annual Index

Government Reports Annual Index
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Total Pages: 1376
Release: 1983
Genre: Government reports announcements & index
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Geothermal Reservoir Engineering Research. Fourth Annual Report, October 1, 1983-September 30, 1984

Geothermal Reservoir Engineering Research. Fourth Annual Report, October 1, 1983-September 30, 1984
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Release: 1984
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Reservoir definition research consisted of well test analysis and bench-scale experiments. Well testing included both single-well pressure drawdown and buildup testing, and multiple-well interference testing. The development of new well testing methods continued to receive major emphasis during the year. Work included a project on multiphase compressibility, including the thermal content of the rock. Several projects on double-porosity systems were completed, and work was done on relative-permeability. Heat extraction from rock will determine the long-term response of geothermal reservoirs to development. The work in this task area involved a combination of physical and mathematical modeling of heat extraction from fractured geothermal reservoirs. International cooperative research dealt with adsorption of water on reservoir cores, the planning of tracer surveys, and an injection and tracer test in the Los Azufres fields. 32 refs.