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Integrative Understanding of Shale Gas Reservoirs
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ISBN: 9783319292960

This timely book begins with an overview of shale gas reservoir features such as natural fracture systems, multi-fractured horizontal wells, adsorption/desorption of methane, and non-line… Mehr…

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Integrative Understanding of Shale Gas Reservoirs - Tsuyoshi Takagi
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Integrative Understanding of Shale Gas Reservoirs - neues Buch

ISBN: 9783319292960

This timely book begins with an overview of shale gasreservoir features such as natural fracture systems, multi-fractured horizontalwells, adsorption/desorption of methane, and non-linear… Mehr…

No. 9783319292960. Versandkosten:Instock, Despatched same working day before 3pm, zzgl. Versandkosten.
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Integrative Understanding of Shale Gas Reservoirs - Kun Sang Lee/ Tae Hong Kim
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ISBN: 9783319292960

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Integrative Understanding of Shale Gas Reservoirs - Danny Weyns
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Bibliographische Daten des bestpassenden Buches

Details zum Buch

Detailangaben zum Buch - Integrative Understanding of Shale Gas Reservoirs


EAN (ISBN-13): 9783319292960
Erscheinungsjahr: 2016
Herausgeber: Springer-Verlag GmbH

Buch in der Datenbank seit 2017-01-22T15:58:08+01:00 (Vienna)
Detailseite zuletzt geändert am 2023-07-29T23:21:31+02:00 (Vienna)
ISBN/EAN: 9783319292960

ISBN - alternative Schreibweisen:
978-3-319-29296-0
Alternative Schreibweisen und verwandte Suchbegriffe:
Autor des Buches: sang kim, lee wells, tae hong


Daten vom Verlag:

Autor/in: Kun Sang Lee; Tae Hong Kim
Titel: SpringerBriefs in Applied Sciences and Technology; Integrative Understanding of Shale Gas Reservoirs
Verlag: Springer; Springer International Publishing
123 Seiten
Erscheinungsjahr: 2016-02-03
Cham; CH
Sprache: Englisch
53,49 € (DE)
55,00 € (AT)
59,00 CHF (CH)
Available
XI, 123 p. 82 illus., 5 illus. in color.

EA; E107; eBook; Nonbooks, PBS / Technik/Wärmetechnik, Energietechnik, Kraftwerktechnik; Technologien für fossile Brennstoffe, allgemein; Verstehen; Shale Gas; Natural Fracture; Multi-fractured Horizontal Well; Adsorption; Geomechanics; C; Fossil Fuels (incl. Carbon Capture); Geotechnical Engineering & Applied Earth Sciences; Fossil Fuel; Geotechnical Engineering and Applied Earth Sciences; Energy; Geowissenschaften; BC

This timely book begins with an overview of shale gas reservoir features such as natural fracture systems, multi-fractured horizontal wells, adsorption/desorption of methane, and non-linear flow within the reservoir. Geomechanical modelling, an aspect of importance in ultra-low permeability reservoirs, is also presented in detail.

Taking these complex features of shale reservoirs into account, the authors develop a numerical model, which is verified with field data using the history matching technique. Based on this model, the pressure transient and production characteristics of a fractured horizontal well in a shale gas reservoir are analysed with respect to reservoir and fracture properties. Methods for the estimation of shale properties are also detailed. Minifrac tests, rate transient tests (RTA), and type curve matching are used to estimate the initial pressure, permeability, and fracture half-length. Lastly, future technologies such as the technique of injecting CO2 into shale reservoirs are presented.

The book will be of interest to industrial practitioners, as well as to academics and graduate students in the field of reservoir engineering.

Introduction.- Characteristics of Shale Reservoirs.- Numerical Modeling.- Performance Analysis.-Future Technologies.

From 1991 to 1995, Dr. Lee worked on the analysis of geopressured-geothermal aquifer and long-time behaviour of closed gas reservoirs as a research assistant at Center for Petroleum and Geosystems Engineering, University of Texas at Austin, U.S.A. Obtaining a Ph.D. at the University of Texas at Austin in 1995, he worked as a research specialist at Kumho & Co. and a lecturer at Seoul National University. Since 1998, he has worked on various aspects reservoir engineering as a professor of Environmental and Energy Systems Engineering at Kyonggi University. Since 2011, he has been a professor at Hanyang University, Seoul, Korea.

Responds to the growing need for information on enhanced gas

recovery for shale gas reservoirs

Provides detailed methods for the evaluation of reservoir

Presents field data to verify the proposed model for understanding reservoir behaviour

Includes supplementary material: sn.pub/extras



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