An Introduction to Geophysical Exploration
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This new edition of the well-established Kearey and Brooks text is fully updated to reflect the important developments in geophysical methods since the production of the previous edition. The broad scope of previous editions is maintained, with even greater clarity of explanations from the revised text and extensively revised figures. Each of the major geophysical methods is treated systematically developing the theory behind the method and detailing the instrumentation, field data acquisition techniques, data processing and interpretation methods.
The practical application of each method to such diverse exploration applications as petroleum, groundwater, engineering, environmental and forensic is shown by case histories. The mathematics required in order to understand the text is purposely kept to a minimum, so the book is suitable for courses taken in geophysics by all undergraduate students. It will also be of use to postgraduate students who might wish to include geophysics in their studies and to all professional geologists who wish to discover the breadth of the subject in connection with their own work.
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- Wiley Professional, Reference & Trade (Wiley K&L)
- 9781118698938
- 9780632049295
- ePub
- 3
- Philip Kearey; Michael Brooks; Ian Hill
- English
- 2013-04-16
- 100
- 10
- 2
Kaflar
- Cover
- Contents
- Title Page
- Copyright
- Preface
- 1 The principles and limitations of geophysical exploration methods
- 1.1 Introduction
- 1.2 The survey methods
- 1.3 The problem of ambiguity in geophysical interpretation
- 1.4 The structure of the book
- 2 Geophysical data processing
- 2.1 Introduction
- 2.2 Digitization of geophysical data
- 2.3 Spectral analysis
- 2.4 Waveform processing
- 2.5 Digital filtering
- 2.6 Imaging and modelling
- Further reading
- 3 Elements of seismic surveying
- 3.1 Introduction
- 3.2 Stress and strain
- 3.3 Seismic waves
- 3.4 Seismic wave velocities of rocks
- 3.5 Attenuation of seismic energy along ray paths
- 3.6 Ray paths in layered media
- 3.7 Reflection and refraction surveying
- 3.8 Seismic data acquisition systems
- Further reading
- 4 Seismic reflection surveying
- 4.1 Introduction
- 4.2 Geometry of reflected ray paths
- 4.3 The reflection seismogram
- 4.4 Multichannel reflection survey design
- 4.5 Time corrections applied to seismic traces
- 4.6 Static correction
- 4.7 Velocity analysis
- 4.8 Filtering of seismic data
- 4.9 Migration of reflection data
- 4.10 3D seismic reflection surveys
- 4.11 Three component (3C) seismic reflection surveys
- 4.12 4D seismic reflection surveys
- 4.13 Vertical seismic profiling
- 4.14 Interpretation of seismic reflection data
- 4.15 Single-channel marine reflection profiling
- 4.16 Applications of seismic reflection surveying
- Further reading
- 5 Seismic refraction surveying
- 5.1 Introduction
- 5.2 Geometry of refracted ray paths: planar interfaces
- 5.3 Profile geometries for studying planar layer problems
- 5.4 Geometry of refracted ray paths: irregular (non-planar) interfaces
- 5.5 Construction of wavefronts and ray-tracing
- 5.6 The hidden and blind layer problems
- 5.7 Refraction in layers of continuous velocity change
- 5.8 Methodology of refraction profiling
- 5.9 Other methods of refraction surveying
- 5.10 Seismic tomography
- 5.11 Applications of seismic refraction surveying
- Further reading
- 6 Gravity surveying
- 6.1 Introduction
- 6.2 Basic theory
- 6.3 Units of gravity
- 6.4 Measurement of gravity
- 6.5 Gravity anomalies
- 6.6 Gravity anomalies of simple-shaped bodies
- 6.7 Gravity surveying
- 6.8 Gravity reduction
- 6.9 Rock densities
- 6.10 Interpretation of gravity anomalies
- 6.11 Elementary potential theory and potential field manipulation
- 6.12 Applications of gravity surveying
- Further reading
- 7 Magnetic surveying
- 7.1 Introduction
- 7.2 Basic concepts
- 7.3 Rock magnetism
- 7.4 The geomagnetic field
- 7.5 Magnetic anomalies
- 7.6 Magnetic surveying instruments
- 7.7 Ground magnetic surveys
- 7.8 Aeromagnetic and marine surveys
- 7.9 Reduction of magnetic observations
- 7.10 Interpretation of magnetic anomalies
- 7.11 Potential field transformations
- 7.12 Applications of magnetic surveying
- Further reading
- 8 Electrical surveying
- 8.1 Introduction
- 8.2 Resistivity method
- 8.3 Induced polarization (IP) method
- 8.4 Self-potential (SP) method
- Further reading
- 9 Electromagnetic surveying
- 9.1 Introduction
- 9.2 Depth of penetration of electromagnetic fields
- 9.3 Detection of electromagnetic fields
- 9.4 Tilt-angle methods
- 9.5 Phase measuring systems
- 9.6 Time-domain electromagnetic surveying
- 9.7 Non-contacting conductivity measurement
- 9.8 Airborne electromagnetic surveying
- 9.9 Interpretation of electromagnetic data
- 9.10 Limitations of the electromagnetic method
- 9.11 Telluric and magnetotelluric field methods
- 9.12 Ground-penetrating radar
- 9.13 Applications of electromagnetic surveying
- Further reading
- 10 Radiometric surveying
- 10.1 Introduction
- 10.2 Radioactive decay
- 10.3 Radioactive minerals
- 10.4 Instruments for measuring radioactivity
- 10.5 Field surveys
- 10.6 Example of radiometric surveying
- Further reading
- 11 Geophysical borehole logging
- 11.1 Introduction to drilling
- 11.2 Principles of well logging
- 11.3 Formation evaluation
- 11.4 Resistivity logging
- 11.5 Induction logging
- 11.6 Self-potential logging
- 11.7 Radiometric logging
- 11.8 Sonic logging
- 11.9 Temperature logging
- 11.10 Magnetic logging
- 11.11 Gravity logging
- Further reading
- Appendix: SI, c.g.s. and Imperial (customary USA) units and conversion factors
- References
- Supplemental images
- Index