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図書

図書
Olaf Kolditz
出版情報: Berlin ; Tokyo : Springer, c2002  xv, 378 p. ; 24 cm
シリーズ名: Engineering online library
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目次情報: 続きを見る
Balance Equations of Fluid Mechanics
Turbulence
Porous Media
Problem Classification
Numerical Methods
Finite Difference Method
Finite Element Method
Finite Volume Method
Object-Oriented Methods for Hydrosystem Modeling
Object-Oriented Programming Techniques
Element Implementation
Non-Linear Flow in Fractured Media
Heat Transport in Fractured-Porous Media
Density Dependent Flow in Porous Media
Multiphase Flow in Deformable Porous Media
Balance Equations of Fluid Mechanics
Turbulence
Porous Media
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電子ブック

EB
Olaf Kolditz, Uwe-Jens Görke
出版情報: SpringerLink Books Mathematics And Statistics 2012 , Springer Berlin Heidelberg, 2012
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目次情報: 続きを見る
Introduction / 1:
Scope of This Book / 1.1:
Application Areas / 1.2:
Theory and Numerics / Part I:
Theory / 2:
Continuum Mechanics / 2.1:
Porous Medium / 2.2:
Balance Equations / 2.3:
Fluid Properties / 2.4:
Mechanical Properties / 2.5:
Porous Medium Properties / 2.6:
Numerical Methods / 3:
Object-Orientation in Finite Element Analysis / 3.1:
General Finite Element Formulations / 3.3:
Element Objects: ELE / 3.4:
Parallel Computing and Automatic Control for Time Stepping / 3.5:
Benchmarks for Single Processess / Part II:
Heat Transport / 4:
Linear Heat Conduction in a Finite Solid / 4.1:
Radial Heat Conduction in a Solid / 4.2:
Heat Transport in a Fracture / 4.3:
Heat Transport in a Porous Medium / 4.4:
Heat Transport in a Fracture-Matrix System / 4.5:
Groundwater Flow / 5:
Groundwater Flow in an Anisotropic Medium / 5.1:
Groundwater Flow in a Heterogeneous Medium / 5.2:
Confined Aquifer with Constant Channel Source Term / 5.3:
Thies' Problem / 5.4:
Unconfined Aquifer / 5.5:
2-D Steady State Flow in Porous Media with a Discrete Fracture / 5.6:
Richards Flow / 6:
Single Continuum / 6.1:
Dual Continua / 6.2:
Overland Flow / 7:
Surface Flow on a Tilted V-Catchment / 7.1:
Infiltration Excess (Horton) Overland Flow / 7.2:
Gas Flow / 8:
Material Functions / 8.1:
Element Test / 8.2:
Verifications / 8.3:
Isothermal Compressible Gas Flow / 8.4:
Joule-Thomson Cooling Processes / 8.5:
Air Flow Example / 8.6:
Deformation Processes / 9:
Elasticity / 9.1:
Elastoplasticity / 9.2:
Viscoplastic Creep / 9.3:
Mass Transport / 10:
Diffusion / 10.1:
Decay / 10.2:
Sorption / 10.3:
Sorption and Decay / 10.4:
Matrix Diffusion / 10.5:
Particle Tracking / 10.6:
RWPT in Fractures / 10.7:
Examples for Coupled Processes / Part III:
Density Dependent Flow / 11:
The Elder Problem / 11.1:
The Goswami Problem / 11.3:
The Schincariol Problem / 11.4:
Multiphase Flow Processes / 12:
Isothermal Two-Phase Flow / 12.1:
Non-isothermal Two-Phase Flow / 12.2:
Consolidation (HnM) Processes / 13:
Single Phase Consolidation / 13.1:
Unsaturated (Richards) Consolidation / 13.2:
Two-Phase Consolidation / 13.3:
Flow and Mechanics in Discrete Fracture-Matrix Rock Systems / 13.4:
Thermomechanics / 14:
Thermoelastic Stress Analysis in Homogeneous Material (3 D) / 14.1:
Thermoelastic Stress Analysis in Composite Materials (3 D) / 14.2:
Thermoelastic Deformation in a Hallow Cylinder / 14.3:
Reactive Transport / 15:
Calcite dissolution and precipitation (1D) / 15.1:
Cation Exchange (1D) / 15.2:
Serial and Parallel Reactions (1D) / 15.3:
Xylene degradation (1D) / 15.4:
TCE-and cis-DCE-degradation for zero valent iron surface (1D) / 15.5:
Sequential CHC degradation with isotope fractionation (1D) / 15.6:
Degradation Network (1D) / 15.7:
Degradation with double Monod kinetics (2D) / 15.8:
Clogging simulation (2D) / 15.9:
Software Engineering / A:
Data Processing / B:
Gino_OGS / C:
Geometric Modelling, Gridding and Visualization / D:
Heat Transport in a Real Fracture-Matrix System / E:
Bibliography
Introduction / 1:
Scope of This Book / 1.1:
Application Areas / 1.2:
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