The Resource Earthquake and volcano deformation, Paul Segall, (electronic resource)

Earthquake and volcano deformation, Paul Segall, (electronic resource)

Label
Earthquake and volcano deformation
Title
Earthquake and volcano deformation
Statement of responsibility
Paul Segall
Creator
Subject
Genre
Language
  • eng
  • eng
Summary
Earthquake and Volcano Deformation is the first textbook to present the mechanical models of earthquake and volcanic processes, emphasizing earth-surface deformations that can be compared with observations from Global Positioning System (GPS) receivers, Interferometric Radar (InSAR), and borehole strain- and tiltmeters. Paul Segall provides the physical and mathematical fundamentals for the models used to interpret deformation measurements near active faults and volcanic centers. Segall highlights analytical methods of continuum mechanics applied to problems of active crustal d
Cataloging source
MiAaPQ
http://library.link/vocab/creatorDate
1954-
http://library.link/vocab/creatorName
Segall, Paul
Dewey number
  • 551.2
  • 551.8
Illustrations
illustrations
Index
index present
Language note
English
LC call number
QE604
LC item number
.S44 2010
Literary form
non fiction
Nature of contents
  • dictionaries
  • bibliography
http://library.link/vocab/subjectName
  • Rock deformation
  • Strains and stresses
  • Volcanism
  • Earthquakes
  • Deformations (Mechanics)
Label
Earthquake and volcano deformation, Paul Segall, (electronic resource)
Instantiates
Publication
Note
Description based upon print version of record
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Content category
text
Content type code
txt
Contents
  • Cover; Contents; Preface; Acknowledgments; Deformation, Stress, and Conservation Laws; 1.1 Strain; 1.1.1 Strains in Curvilinear Coordinates; 1.2 Rotation; 1.3 Stress; 1.4 Coordinate Transformations; 1.5 Principal Strains and Stresses; 1.6 Compatibility Equations; 1.7 Conservation Laws; 1.7.1 Equilibrium Equations in Curvilinear Coordinates; 1.8 Constitutive Laws; 1.9 Reciprocal Theorem; 1.10 Problems; 1.11 References; Dislocation Models of Strike-Slip Faults; 2.1 Full-Space Solution; 2.2 Half-Space Solution; 2.2.1 Coseismic Faulting; 2.2.2 Interseismic Deformation; 2.2.3 Postseismic Slip
  • 2.3 Distributed Slip2.4 Application to the San Andreas and Other Strike-Slip Faults; 2.5 Displacement at Depth; 2.6 Summary and Perspective; 2.7 Problems; 2.8 References; Dip-Slip Faults and Dislocations in Three Dimensions; 3.1 Volterra's Formula; 3.1.1 Body Force Equivalents andMoment Tensors; 3.2 Screw Dislocations; 3.3 Two-Dimensional Edge Dislocations; 3.3.1 Dipping Fault; 3.4 Coseismic Deformation Associated with Dipping Faults; 3.5 Displacements and Stresses Due to Edge Dislocation at Depth; 3.6 Dislocations in Three Dimensions; 3.6.1 Full-Space Green's Functions
  • 3.6.2 Half-Space Green's Functions3.6.3 Point-Source Dislocations; 3.6.4 Finite Rectangular Dislocations; 3.6.5 Examples; 3.6.6 Distributed Slip; 3.7 Strain Energy Change Due to Faulting; 3.8 Summary and Perspective; 3.9 Problems; 3.10 References; Crack Models of Faults; 4.1 Boundary Integral Method; 4.1.1 Inversion of the Integral Equation; 4.2 Displacement on the Earth's Surface; 4.3 A Brief Introduction to Fracture Mechanics; 4.4 Nonsingular Stress Distributions; 4.5 Comparison of Slip Distributions and Surface Displacements; 4.6 Boundary ElementMethods; 4.7 Fourier TransformMethods
  • 4.8 Some Three-Dimensional Crack Results4.9 Summary and Perspective; 4.10 Problems; 4.11 References; Elastic Heterogeneity; 5.1 Long Strike-Slip Fault Bounding Two Media; 5.2 Strike-Slip Fault within a Compliant Fault Zone; 5.3 Strike-Slip Fault beneath a Layer; 5.4 Strike-Slip within a Layer over Half-Space; 5.5 Propagator Matrix Methods; 5.5.1 The Propagator Matrix for Antiplane Deformation; 5.5.2 Vertical Fault in a Homogeneous Half-Space; 5.5.3 Vertical Fault within Half-Space beneath a Layer; 5.5.4 Vertical Fault in Layer over Half-Space
  • 5.5.5 General Solution for an Arbitrary Number of Layers5.5.6 Displacements and Stresses at Depth; 5.5.7 PropagatorMethods for Plane Strain; 5.6 Propagator Solutions in Three Dimensions; 5.7 Approximate Solutions for Arbitrary Variations in Properties; 5.7.1 Variations in Shear Modulus; 5.7.2 Screw Dislocation; 5.7.3 Edge Dislocation; 5.8 Summary and Perspective; 5.9 Problems; 5.10 References; Postseismic Relaxation; 6.1 Elastic Layer over Viscous Channel; 6.2 Viscoelasticity; 6.2.1 Correspondence Principle; 6.3 Strike-Slip Fault in an Elastic Plate Overlying a Viscoelastic Half-Space
  • 6.3.1 Stress in Plate and Half-Space
Dimensions
unknown
Extent
1 online resource (457 p.)
Form of item
online
Isbn
9781400833856
Media category
computer
Media type code
c
Specific material designation
remote
System control number
  • (CKB)2520000000006995
  • (EBL)485762
  • (OCoLC)635290379
  • (SSID)ssj0000435730
  • (PQKBManifestationID)11317043
  • (PQKBTitleCode)TC0000435730
  • (PQKBWorkID)10421028
  • (PQKB)11008774
  • (MiAaPQ)EBC485762
  • (EXLCZ)992520000000006995
Label
Earthquake and volcano deformation, Paul Segall, (electronic resource)
Publication
Note
Description based upon print version of record
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Content category
text
Content type code
txt
Contents
  • Cover; Contents; Preface; Acknowledgments; Deformation, Stress, and Conservation Laws; 1.1 Strain; 1.1.1 Strains in Curvilinear Coordinates; 1.2 Rotation; 1.3 Stress; 1.4 Coordinate Transformations; 1.5 Principal Strains and Stresses; 1.6 Compatibility Equations; 1.7 Conservation Laws; 1.7.1 Equilibrium Equations in Curvilinear Coordinates; 1.8 Constitutive Laws; 1.9 Reciprocal Theorem; 1.10 Problems; 1.11 References; Dislocation Models of Strike-Slip Faults; 2.1 Full-Space Solution; 2.2 Half-Space Solution; 2.2.1 Coseismic Faulting; 2.2.2 Interseismic Deformation; 2.2.3 Postseismic Slip
  • 2.3 Distributed Slip2.4 Application to the San Andreas and Other Strike-Slip Faults; 2.5 Displacement at Depth; 2.6 Summary and Perspective; 2.7 Problems; 2.8 References; Dip-Slip Faults and Dislocations in Three Dimensions; 3.1 Volterra's Formula; 3.1.1 Body Force Equivalents andMoment Tensors; 3.2 Screw Dislocations; 3.3 Two-Dimensional Edge Dislocations; 3.3.1 Dipping Fault; 3.4 Coseismic Deformation Associated with Dipping Faults; 3.5 Displacements and Stresses Due to Edge Dislocation at Depth; 3.6 Dislocations in Three Dimensions; 3.6.1 Full-Space Green's Functions
  • 3.6.2 Half-Space Green's Functions3.6.3 Point-Source Dislocations; 3.6.4 Finite Rectangular Dislocations; 3.6.5 Examples; 3.6.6 Distributed Slip; 3.7 Strain Energy Change Due to Faulting; 3.8 Summary and Perspective; 3.9 Problems; 3.10 References; Crack Models of Faults; 4.1 Boundary Integral Method; 4.1.1 Inversion of the Integral Equation; 4.2 Displacement on the Earth's Surface; 4.3 A Brief Introduction to Fracture Mechanics; 4.4 Nonsingular Stress Distributions; 4.5 Comparison of Slip Distributions and Surface Displacements; 4.6 Boundary ElementMethods; 4.7 Fourier TransformMethods
  • 4.8 Some Three-Dimensional Crack Results4.9 Summary and Perspective; 4.10 Problems; 4.11 References; Elastic Heterogeneity; 5.1 Long Strike-Slip Fault Bounding Two Media; 5.2 Strike-Slip Fault within a Compliant Fault Zone; 5.3 Strike-Slip Fault beneath a Layer; 5.4 Strike-Slip within a Layer over Half-Space; 5.5 Propagator Matrix Methods; 5.5.1 The Propagator Matrix for Antiplane Deformation; 5.5.2 Vertical Fault in a Homogeneous Half-Space; 5.5.3 Vertical Fault within Half-Space beneath a Layer; 5.5.4 Vertical Fault in Layer over Half-Space
  • 5.5.5 General Solution for an Arbitrary Number of Layers5.5.6 Displacements and Stresses at Depth; 5.5.7 PropagatorMethods for Plane Strain; 5.6 Propagator Solutions in Three Dimensions; 5.7 Approximate Solutions for Arbitrary Variations in Properties; 5.7.1 Variations in Shear Modulus; 5.7.2 Screw Dislocation; 5.7.3 Edge Dislocation; 5.8 Summary and Perspective; 5.9 Problems; 5.10 References; Postseismic Relaxation; 6.1 Elastic Layer over Viscous Channel; 6.2 Viscoelasticity; 6.2.1 Correspondence Principle; 6.3 Strike-Slip Fault in an Elastic Plate Overlying a Viscoelastic Half-Space
  • 6.3.1 Stress in Plate and Half-Space
Dimensions
unknown
Extent
1 online resource (457 p.)
Form of item
online
Isbn
9781400833856
Media category
computer
Media type code
c
Specific material designation
remote
System control number
  • (CKB)2520000000006995
  • (EBL)485762
  • (OCoLC)635290379
  • (SSID)ssj0000435730
  • (PQKBManifestationID)11317043
  • (PQKBTitleCode)TC0000435730
  • (PQKBWorkID)10421028
  • (PQKB)11008774
  • (MiAaPQ)EBC485762
  • (EXLCZ)992520000000006995

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