Plurigaussian Simulations in Geosciences by Margaret Armstrong, Alain Galli, Hélène Beucher, Gaelle Loc'h, Didier Renard, Brigitte Doligez, Rémi Eschard, Francois Geffroy.

Simulation is the fastest developing branch of geostatistics and simulating facies inside reservoirs and orebodies is the most exciting part of this. Several methods have been developed to do this (sequential indicator simulations, Boolean simulations, Markov chains and plurigaussian simulations). T...

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Bibliographic Details
Main Authors: Armstrong, Margaret (Author), Galli, Alain (Author), Beucher, Hélène (Author), Loc'h, Gaelle (Author), Renard, Didier (Author), Doligez, Brigitte (Author), Eschard, Rémi (Author), Geffroy, Francois (Author)
Corporate Author: SpringerLink (Online service)
Format: eBook
Language:English
Published: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2011.
Edition:2nd ed. 2011.
Series:Springer eBook Collection.
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Online Access:Click to view e-book
Holy Cross Note:Loaded electronically.
Electronic access restricted to members of the Holy Cross Community.
Description
Summary:Simulation is the fastest developing branch of geostatistics and simulating facies inside reservoirs and orebodies is the most exciting part of this. Several methods have been developed to do this (sequential indicator simulations, Boolean simulations, Markov chains and plurigaussian simulations). This book focuses on the last type of simulations. It presents the theory required to understand the method, along practical examples of applications in mining and the oil industry as well as tutorial exercises. Demonstration software to illustrate how these simulations work  is available on http://pluridemo.geosciences.mines-paristech.fr Since the publication of the first edition, enormous numbers of papers have appeared in the literature on the subject. Plurigaussian simulations are now the preferred method for simulating facies in both mining & the oil industry. The new edition contains new case studies in both mining & petroleum, together with an extensively updated theory section.
Physical Description:X, 176 p. online resource.
ISBN:9783642196072
DOI:10.1007/978-3-642-19607-2