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Advanced Methods of Joint Inversion and Fusion of Multiphysics Data / / by Michael S. Zhdanov
Advanced Methods of Joint Inversion and Fusion of Multiphysics Data / / by Michael S. Zhdanov
Autore Zhdanov Michael S
Edizione [1st ed. 2023.]
Pubbl/distr/stampa Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2023
Descrizione fisica 1 online resource (XVI, 369 p. 52 illus., 37 illus. in color.)
Disciplina 550
Collana Advances in Geological Science
Soggetto topico Geophysics
Geology
Geotechnical engineering
Power resources
Geotechnical Engineering and Applied Earth Sciences
Natural Resource and Energy Economics
ISBN 9789819967223
9819967228
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction to inversion theory -- Elements of probability theory -- Vector spaces of models and data -- Principles of regularization theory -- Linear inverse problems -- Probabilistic methods of inverse problem solution -- Gradient-type methods of non-linear inversion -- Joint inversion based on analytical and statistical relationships between different physical properties -- Joint inversion based on structural similarities -- Joint focusing inversion of multiphysics data -- Joint minimum entropy inversion -- Gramian method of generalized joint inversion -- Probabilistic approach to gramian inversion -- Simultaneous processing and fusion of multiphysics data and images -- Machine learning in the context of inversion theory -- Machine learning inversion of multiphysics data -- Modeling and inversion of potential field data -- Case histories of joint inversion of gravity and magnetic data. .
Record Nr. UNINA-9910799234103321
Zhdanov Michael S  
Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2023
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Foundations of Geophysical Electromagnetic Theory and Methods
Foundations of Geophysical Electromagnetic Theory and Methods
Autore Zhdanov Michael S
Edizione [2nd ed.]
Pubbl/distr/stampa Saint Louis : , : Elsevier, , 2017
Descrizione fisica 1 online resource (806 pages)
Disciplina 538/.720151
Soggetto topico Magnetic prospecting
Electromagnetic measurements
ISBN 9780444638908
0444638903
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction to field theory. Differential calculus of vector fields and differential forms -- Foundations of field theory -- Foundations of electromagnetic theory. Electromagnetic field equations -- Models of electromagnetic induction in the earth -- Electromagnetic fields in horizontally stratified media -- Electromagnetic fields in inhomogeneous media -- Inversion and imaging of electromagnetic field data. Principles of ill-posed inverse problem solution -- Electromagnetic inversion -- Electromagnetic migration -- Geophysical electromagnetic methods. Electromagnetic properties of rocks and minerals -- Generation and measurement of electromagnetic fields in geophysical applications -- Direct current and induced polarization methods -- Magnetotelluric and magnetovariational methods -- Electromagnetic methods in the frequency and time domains -- Marine electromagnetic methods -- Airborne electromagnetic methods -- Case histories -- Appendix A. Algebra of differential forms -- Appendix B. Calculus of differential forms -- Appendix C. Linear operators and their matrices -- Appendix D. Mathematical notations -- Appendix E. Definition of fields and units.
Record Nr. UNINA-9910583469103321
Zhdanov Michael S  
Saint Louis : , : Elsevier, , 2017
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Geophysical electromagnetic theory and methods / / Michael S. Zhdanov
Geophysical electromagnetic theory and methods / / Michael S. Zhdanov
Autore Zhdanov Michael S
Pubbl/distr/stampa Oxford, : Elsevier, 2009
Descrizione fisica 1 online resource (869 p.)
Disciplina 622.153
622.15
Collana Methods in geochemistry and geophysics
Soggetto topico Electromagnetic measurements
Prospecting - Geophysical methods
ISBN 9786612169106
9781282169104
1282169106
9780080931760
0080931766
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Front Cover; Geophysical Electromagnetic Theory and Methods; Copyright Page; Contents; Preface; Part I: Introduction to Field Theory; Chapter 1. Differential Calculus of Vector Fields and Differential Forms; 1.1 The Basic Differential Relationships of Field Theory; 1.2 The Basic Integral Relationships of Field Theory; 1.3 Differential Forms in Field Theory; References and Recommended Reading; Chapter 2. Foundations of Field Theory; 2.1 Field Generation; 2.2 Stationary Field Equations and Methods of Their Solutions; 2.3 Scalar and Vector Potentials of the Stationary Field
2.4 Nonstationary Fields and Differential FormsReferences and Recommended Reading; Part II: Foundations of Electromagnetic Theory; Chapter 3. Electromagnetic Field Equations; 3.1 Maxwell's Equations and Boundary Conditions; 3.2 Time-Harmonic Electromagnetic Field; 3.3 Electromagnetic Energy and Poynting's Theorem; 3.4 Electromagnetic Green's Tensors; 3.5 Reciprocity Relations; References and Recommended Reading; Chapter 4. Models of Electromagnetic Induction in the Earth; 4.1 Models of Electromagnetic Fields; 4.2 Static Electromagnetic Fields
4.3 Electromagnetic Field Diffusion in Conductive Media4.4 Electromagnetic Waves; References and Recommended Reading; Chapter 5. Electromagnetic Fields in Horizontally Stratified Media; 5.1 Plane Wave Propagation in a Layered Earth; 5.2 Spectral Method of Computing EM Fields in Horizontally Stratified Media; 5.3 Electromagnetic Field of an Arbitrary System of Magnetospheric Currents in a Horizontally Homogeneous Medium; 5.4 Eectromagnetic Fields Generated in Layered Earth by Electric and Magnetic Dipole Transmitters; References and Recommended Reading
Chapter 6. Electromagnetic Fields in Inhomogeneous Media6.1 Integral Equation Method; 6.2 Integral Equation Method in Models with Inhomogeneous Background Conductivity; 6.3 Family of Linear and Nonlinear Integral Approximations of the Electromagnetic Field; 6.4 Differential Equation Methods; References and Recommended Reading; Part III: Inversion and Imaging of Electromagnetic Field Data; Chapter 7. Principles of Ill-Posed Inverse Problem Solution; 7.1 Ill-Posed Inverse Problems; 7.2 Foundations of Regularization Theory; 7.3 Regularization Parameter; References and Recommended Reading
Chapter 8. Electromagnetic Inversion8.1 Linear Inversions; 8.2 Nonlinear Inversion; 8.3 Quasi-Linear Inversion; 8.4 Quasi-Analytical Inversion; References and Recommended Reading; Chapter 9. Electromagnetic Migration; 9.1 Electromagnetic Migration in the Time Domain; 9.2 Analytic Continuation and Migration in the (k,ω) Domain; 9.3 Finite Difference Migration; 9.4 Visualization of Geoelectric Structures by Use of Migration in the Frequency and Time Domains; 9.5 Migration Versus Inversion; References and Recommended Reading; Part IV: Geophysical Electromagnetic Methods
Chapter 10. Electromagnetic Properties of Rocks and Minerals
Record Nr. UNINA-9911006617803321
Zhdanov Michael S  
Oxford, : Elsevier, 2009
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Geophysical inverse theory and regularization problems / / Michael S. Zhdanov
Geophysical inverse theory and regularization problems / / Michael S. Zhdanov
Autore Zhdanov Michael S
Edizione [1st ed.]
Pubbl/distr/stampa Amsterdam, : Elsevier, 2002
Descrizione fisica 1 online resource (635 p.)
Disciplina 550
550.1515
622.150151
Collana Methods in geochemistry and geophysics
Soggetto topico Inversion (Geophysics)
Geophysics - Measurement
Functional analysis
Mathematical optimization
ISBN 1-281-04863-1
9786611048631
0-08-053250-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover; Contents; Preface; Part I: Introduction to Inversion Theory; Chapter 1. Forward and inverse problems in geophysics; 1.1 Formulation of forward and inverse problems for different geophysical fields; 1.2 Existence and uniqueness of the inverse problem solutions; 1.3 Instability of the inverse problem solution; Chapter 2. ILL-Posed problems and the methods of their solution; 2.1 Sensitivity and resolution of geophysical methods; 2.2 Formulation of well-posed and ill-posed problems; 2.3 Foundations of regularization methods of inverse problem solution; 2.4 Family of stabilizing functionals
2.5 Definition of the regularization parameterPart II: Methods of the Solution of Inverse Problems; Chapter 3. Linear discrete inverse problems; 3.1 Linear least-squares inversion; 3.2 Solution of the purely underdetermined problem; 3.3 Weighted least-squares method; 3.4 Applying the principles of probability theory to a linear inverse problem; 3.5 Regularization methods; 3.6 The Backus-Gilbert Method; Chapter 4. Iterative solutions of the linear inverse problem; 4.1 Linear operator equations and their solution by iterative methods; 4.2 A generalized minimal residual method
4.3 The regularization method in a linear inverse problem solutionChapter 5. Nonlinear inversion technique; 5.1 Gradient-type methods; 5.2 Regularized gradient-type methods in the solution of nonlinear inverse problems; 5.3 Regularized solution of a nonlinear discrete inverse problem; 5.4 Conjugate gradient re-weighted optimization; Part III: Geopotential Field Inversion; Chapter 6. Integral representations in forward modeling of gravity and magnetic fields; 6.1 Basic equations for gravity and magnetic fields
6.2 Integral representations of potential fields based on the theory of functions of a complex variableChapter 7. Integral representations in inversion of gravity and magnetic data; 7.1 Gradient methods of gravity inversion; 7.2 Gravity field migration; 7.3 Gradient methods of magnetic anomaly inversion; 7.4 Numerical methods in forward and inverse modeling; Part IV: Electromagnetic Inversion; Chapter 8. Foundations of electromagnetic theory; 8.1 Electromagnetic field equations; 8.2 Electromagnetic energy flow; 8.3 Uniqueness of the solution of electromagnetic field equations
8.4 Electromagnetic Green's tensorsChapter 9. Integral representations in electromagnetic forward modeling; 9.1 Integral equation method; 9.2 Family of linear and nonlinear integral approximations of the electromagnetic field; 9.3 Linear and non-linear approximations of higher orders; 9.4 Integral representations in numerical dressing; Chapter 10. Integral representations in electromagnetic inversion; 10.1 Linear inversion methods; 10.2 Nonlinear inversion; 10.3 Quasi-linear inversion; 10.4 Quasi-analytical inversion; 10.5 Magnetotelluric (MT) data inversion
Chapter 11. Electromagnetic migration imaging
Record Nr. UNINA-9911004759003321
Zhdanov Michael S  
Amsterdam, : Elsevier, 2002
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Geophysics for Mineral Exploration
Geophysics for Mineral Exploration
Autore Zhdanov Michael S
Pubbl/distr/stampa Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Descrizione fisica 1 online resource (204 p.)
Soggetto topico Research & information: general
Soggetto non controllato 3D focusing migration
adaptive equivalent-dimension
body wave tomography
central India
conjugate migration direction
control source
CSAMT
CSEM
CSRMT
dense array
discovery
effective medium
elastic waves
electromagnetics
fast imaging
Gadarwara
gantour Basin
geophysical electromagnetic modelling
geophysical exploration
gravity
gravity focusing density inversion
grid-characteristic method
hydrogeology
induced polarization
inversion
IOCG
iron deposit
joint inversion
linear slip model
Magnetic anomaly
magnetics
magnetization vector
magnetotelluric method
mineral exploration
mineralization
modeling and inversion
Morocco
n/a
Narmada-Son-Lineament
Ouled Abdoun Basin
phosphate extraction
phosphate mines
polymetallic minerals
preconditioned jacobian-free Newton-Krylov (JFNK) method
regularization
remanent magnetization
seismic methods
single point continuous motion detection
skarn-type iron deposits
three-dimensional
transient electromagnetic method
undulating terrain
unstructured mesh and structured mesh
Zhuxi ore deposit
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910557366603321
Zhdanov Michael S  
Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui