Exciting developments in earthquake science have benefited from new observations, improved computational technologies, and improved modeling capabilities. Designing realistic supercomputer simulation models for the complete earthquake generation process is a grand scientific challenge due to the complexity of phenomena and range of scales involved from microscopic to global.
The book is divided into two parts: The present volume - Part I - focuses on microscopic simulation, scaling physics, dynamic rapture and wave propagation, earthquake generation, cycle and seismic pattern. Topics covered range from numerical developments, rupture and gouge studies of the particle model, Liquefied Cracks and Rayleigh Wave Physics, studies of catastrophic failure and critical sensitivity, numerical and theoretical studies of crack propagation, developments in finite difference methods for modeling faults, long time scale simulation of interacting fault systems, modeling of crustal deformation, through to mantle convection.
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The first of a two-part work, this volume focuses on microscopic simulation, scaling physics, dynamic rapture and wave propagation, earthquake generation, cycle and seismic pattern. Topics covered range from numerical and theoretical studies of crack propagation, developments in finite difference methods for modeling faults, long time scale simulation of interacting fault systems, and modeling of crustal deformation through to mantle convection.
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Taschenbuch. Zustand: Neu. Computational Earthquake Physics: Simulations, Analysis and Infrastructure, Part I | Xiang-Chu Yin (u. a.) | Taschenbuch | 310 S. | Englisch | 2006 | Springer Basel | EAN 9783764379919 | Verantwortliche Person für die EU: Springer Basel AG in Springer Science + Business Media, Heidelberger Platz 3, 14197 Berlin, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu. Artikel-Nr. 102101177
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Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - Exciting developments in earthquake science have benefited from new observations, improved computational technologies, and improved modeling capabilities. Designing realistic supercomputer simulation models for the complete earthquake generation process is a grand scientific challenge due to the complexity of phenomena and range of scales involved from microscopic to global.The book is divided into two parts: The present volume - Part I - focuses on microscopic simulation, scaling physics, dynamic rapture and wave propagation, earthquake generation, cycle and seismic pattern. Topics covered range from numerical developments, rupture and gouge studies of the particle model, Liquefied Cracks and Rayleigh Wave Physics, studies of catastrophic failure and critical sensitivity, numerical and theoretical studies of crack propagation, developments in finite difference methods for modeling faults, long time scale simulation of interacting fault systems, modeling of crustal deformation, through to mantle convection. Artikel-Nr. 9783764379919
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Anbieter: Kennys Bookstore, Olney, MD, USA
Zustand: New. Focuses on microscopic simulation, scaling physics, dynamic rapture and wave propagation, earthquake generation, cycle and seismic pattern. This book contains topics ranging from numerical developments, rupture and gouge studies of the particle model, and Liquefied Cracks and Rayleigh Wave Physics. Editor(s): Xiang-Chu, Yin; Mora, Peter; Donnellan, Andrea; Mitsuhiro, Matsu'ura. Series: Pageoph Topical Volumes. Num Pages: 310 pages, biography. Category: (P) Professional & Vocational. Dimension: 240 x 170 x 17. Weight in Grams: 616. . 2006. Paperback. . . . . Books ship from the US and Ireland. Artikel-Nr. V9783764379919