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"The aim of this book is to discuss the processes that operate during the deformation and metamorphism of rocks in the crust and upper lithosphere of the Earth with the goal of understanding how these processes control or influence the structures that we observe in the field. The intent is to consider these processes within a framework set both by the individual mechanisms of deformation and the fundamental mechanics that describe and relate these mechanisms. Such mechanisms do not necessarily operate independently of each other but may be strongly coupled so that each process has strong feedback influences on the others leading to structures and mineral assemblages that do not develop in the uncoupled environment. The general system we consider in this book is a deforming, chemically reactive system in which fluid and thermal transport play significant roles"--
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This monograph aims to provide state-of-the-art theoretical results in a systematic treatment of convective and advective heat transfer during fluid flow in geological systems at the crustal scale. Although some numerical results are provided to complement theoretical ones, the main focus of this monograph is on theoretical aspects of the topic. The theoretical treatment contained in this monograph is also applicable to a wide range of problems of other length-scales such as engineering length-scales. To broaden the readership of this monograph, common mathematical notations are used to derive the theoretical solutions. This enables this monograph to be used either as a useful textbook for postgraduate students or as a valuable reference book for mathematicians, engineers and geoscientists.
Terrestrial heat flow. --- Terrestrial heat flow --- Measurement. --- Earth --- Crust. --- Earth sciences. --- Geophysics. --- Continuum physics. --- Thermodynamics. --- Heat engineering. --- Heat transfer. --- Mass transfer. --- Earth Sciences. --- Geophysics/Geodesy. --- Classical Continuum Physics. --- Earth Sciences, general. --- Engineering Thermodynamics, Heat and Mass Transfer. --- Mass transport (Physics) --- Thermodynamics --- Transport theory --- Heat transfer --- Thermal transfer --- Transmission of heat --- Energy transfer --- Heat --- Mechanical engineering --- Chemistry, Physical and theoretical --- Dynamics --- Mechanics --- Physics --- Heat-engines --- Quantum theory --- Classical field theory --- Continuum physics --- Continuum mechanics --- Geological physics --- Terrestrial physics --- Earth sciences --- Geosciences --- Environmental sciences --- Physical sciences --- Terrestrial heat transfer --- Burgers equation --- Earth temperature --- Geophysics --- Heat budget (Geophysics) --- Heat equation --- Transmission --- Physical geography. --- Geography. --- Engineering. --- Classical and Continuum Physics. --- Construction --- Industrial arts --- Technology --- Cosmography --- World history --- Geography --- Earth (Planet)
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This monograph aims to provide state-of-the-art numerical methods, procedures and algorithms in the field of computational geoscience, based on the authors' own work during the last decade. Although some theoretical results are provided to verify numerical ones, the main focus of this monograph is on computational simulation aspects of the newly-developed computational geoscience discipline. The advanced numerical methods, procedures and algorithms presented are also applicable to a wide range of problems in both geological length-scales and engineering length-scales. In order to broaden the readership, common mathematical notations are used to describe the theoretical aspects of geoscience problems, making it either an invaluable textbook for postgraduate students or an indispensable reference book for computational geoscientists, mathematicians, engineers and geoscientists.
Geodesy. Cartography --- Geology. Earth sciences --- Computer architecture. Operating systems --- fotogrammetrie --- computerprogramma's --- mijnbouw --- geografie --- geologie
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Geology, Structural --- Tectonique --- 551.242 --- #Hist.Geol. --- Geotectonics --- Structural geology --- Tectonics (Geology) --- Physical geology --- Tectonic movements, fluctuations etc. Crust movements. Tectonic structures and their elements --- Geology, Structural. --- 551.242 Tectonic movements, fluctuations etc. Crust movements. Tectonic structures and their elements --- 551.243 --- Structural geology. Fracture disturbances. Plutonic fractures. Faults. Folds --- 551.243 Structural geology. Fracture disturbances. Plutonic fractures. Faults. Folds --- Geology. Earth sciences --- #Hist.Geol --- GEOPHYSIQUE --- GEODYNAMIQUE --- ISOSTASIE, DERIVE DES CONTINENTS, PLAQUES... --- TECTONIQUE --- TECTONIQUE DETAIL
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This monograph aims to provide state-of-the-art theoretical results in a systematic treatment of convective and advective heat transfer during fluid flow in geological systems at the crustal scale. Although some numerical results are provided to complement theoretical ones, the main focus of this monograph is on theoretical aspects of the topic. The theoretical treatment contained in this monograph is also applicable to a wide range of problems of other length-scales such as engineering length-scales. To broaden the readership of this monograph, common mathematical notations are used to derive the theoretical solutions. This enables this monograph to be used either as a useful textbook for postgraduate students or as a valuable reference book for mathematicians, engineers and geoscientists.
Mathematics --- Classical mechanics. Field theory --- Thermodynamics --- Geophysics --- Geology. Earth sciences --- Applied physical engineering --- thermodynamica --- wiskunde --- geografie --- mechanica --- geofysica --- warmteoverdracht
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This monograph aims to provide state-of-the-art numerical methods, procedures and algorithms in the field of computational geoscience, based on the authors' own work during the last decade. Although some theoretical results are provided to verify numerical ones, the main focus of this monograph is on computational simulation aspects of the newly-developed computational geoscience discipline. The advanced numerical methods, procedures and algorithms presented are also applicable to a wide range of problems in both geological length-scales and engineering length-scales. In order to broaden the readership, common mathematical notations are used to describe the theoretical aspects of geoscience problems, making it either an invaluable textbook for postgraduate students or an indispensable reference book for computational geoscientists, mathematicians, engineers and geoscientists.
Geodesy. Cartography --- Geology. Earth sciences --- Computer architecture. Operating systems --- fotogrammetrie --- computerprogramma's --- mijnbouw --- geografie --- geologie
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Mathematics --- Classical mechanics. Field theory --- Thermodynamics --- Geophysics --- Geology. Earth sciences --- Applied physical engineering --- thermodynamica --- wiskunde --- geografie --- mechanica --- geofysica --- warmteoverdracht
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