<p><P>This monograph aims to provide state-of-the-art numerical methods, procedures and algorithms in the field of computational geoscience, based on the authorsβ own work during the last decade. Although some theoretical results are provided to verify numerical ones, the main focus of this monograp
Fundamentals of computational geoscience: Numerical methods and algorithms
β Scribed by Alison Ord, Bruce E. Hobbs, Chongbin Zhao (auth.)
- Publisher
- Springer-Verlag Berlin Heidelberg
- Year
- 2009
- Tongue
- English
- Leaves
- 248
- Series
- Lecture Notes in Earth Sciences 122
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
This monograph aims to provide state-of-the-art numerical methods, procedures and algorithms in the field of computational geoscience, based on the authorsβ 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.
β¦ Table of Contents
Front Matter....Pages i-xvi
Introduction....Pages 1-6
A Progressive Asymptotic Approach Procedure for Simulating Steady-State Natural Convective Problems in Fluid-Saturated Porous Media....Pages 7-36
A Consistent Point-Searching Interpolation Algorithm for Simulating Coupled Problems between Deformation, Pore-Fluid Flow, Heat Transfer and Mass Transport Processes in Hydrothemal Systems....Pages 37-71
A Term Splitting Algorithm for Simulating Fluid-Rock Interaction Problems in Fluid-Saturated Hydrothermal Systems of Subcritical Zhao Numbers....Pages 73-93
A Segregated Algorithm for Simulating Chemical Dissolution Front Instabilities in Fluid-Saturated Porous Rocks....Pages 95-119
A Decoupling Procedure for Simulating Fluid Mixing, Heat Transfer and Non-Equilibrium Redox Chemical Reactions in Fluid-Saturated Porous Rocks....Pages 121-151
An Equivalent Source Algorithm for Simulating Thermal and Chemical Effects of Intruded Magma Solidification Problems....Pages 153-173
The Particle Simulation Method for Dealing with Spontaneous Crack Generation Problems in Large-Scale Geological Systems....Pages 175-220
Back Matter....Pages 221-241
β¦ Subjects
Earth Sciences, general; Geotechnical Engineering & Applied Earth Sciences; Remote Sensing/Photogrammetry
π SIMILAR VOLUMES
<p><P>This monograph aims to provide state-of-the-art numerical methods, procedures and algorithms in the field of computational geoscience, based on the authorsβ own work during the last decade. Although some theoretical results are provided to verify numerical ones, the main focus of this monograp
<i>Numerical Methods</i> provides a clear and concise exploration of standard numerical analysis topics, as well as nontraditional ones, including mathematical modeling, Monte Carlo methods, Markov chains, and fractals. Filled with appealing examples that will motivate students, the textbook conside
<p> <i>Numerical Methods</i> provides a clear and concise exploration of standard numerical analysis topics, as well as nontraditional ones, including mathematical modeling, Monte Carlo methods, Markov chains, and fractals. Filled with appealing examples that will motivate students, the textbook con