Produktbild: An Introduction to Applied and Environmental Geophysics

An Introduction to Applied and Environmental Geophysics

199,99 €

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

02.05.2011

Verlag

John Wiley & Sons

Seitenzahl

712

Maße (L/B/H)

28,3/22,5/4,2 cm

Gewicht

1921 g

Auflage

2nd edition

Sprache

Englisch

ISBN

978-0-471-48535-3

Beschreibung

Rezension

"A course using it will provide as much geophysics as many want or need, he says, but can also establish a foundation for more advanced courses. It discusses some topics rarely covered in introductory texts, such as geophysical survey design and line optimization techniques, image processing of potential field data, recent developments in high-resolution seismic reflection profiling, and electrical resistivity sub-surface imaging." (Book News, 1 August 2011)

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

02.05.2011

Verlag

John Wiley & Sons

Seitenzahl

712

Maße (L/B/H)

28,3/22,5/4,2 cm

Gewicht

1921 g

Auflage

2nd edition

Sprache

Englisch

ISBN

978-0-471-48535-3

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: An Introduction to Applied and Environmental Geophysics
  • Preface to the 2nd Edition.
     
    Acknowledgements.
     
    1 Introduction.
     
    1.1 What are 'applied' and 'environmental' geophysics?
     
    1.2 Geophysical methods.
     
    1.3 Matching geophysical methods to applications.
     
    1.4 Planning a geophysical survey.
     
    1.5 Geophysical survey design.
     
    2 Gravity Methods.
     
    2.1 Introduction.
     
    2.2 Physical basis.
     
    2.3 Measurement of gravity.
     
    2.4 Gravity meters.
     
    2.5 Corrections to gravity observations.
     
    2.6 Interpretation methods.
     
    2.7 Applications and case histories.
     
    3 Geomagnetic Methods.
     
    3.1 Introduction.
     
    3.2 Basic concepts and units of geomagnetism.
     
    3.3 Magnetic properties of rocks.
     
    3.4 The Earth's magnetic field.
     
    3.5 Magnetic instruments.
     
    3.6 Magnetic surveying.
     
    3.7 Qualitative interpretation.
     
    3.8 Quantitative interpretation.
     
    3.9 Applications and case histories.
     
    4 Applied Seismology: Introduction and Principles.
     
    4.1 Introduction.
     
    4.2 Seismic waves.
     
    4.3 Raypath geometry in layered ground.
     
    4.4 Loss of seismic energy.
     
    4.5 Seismic energy sources.
     
    4.6 Detection and recording of seismic waves.
     
    5 Seismic Refraction Surveying.
     
    5.1 Introduction.
     
    5.2 General principles of refraction surveying.
     
    5.3 Geometry of refracted raypaths.
     
    5.4 Interpretational methods.
     
    5.5 Applications and case histories.
     
    5.6 Shear wave methods.
     
    6 Seismic Reflection Surveying.
     
    6.1 Introduction.
     
    6.2 Reflection surveys.
     
    6.3 Reflection data processing.
     
    6.4 Correlating seismic data with borehole logs and cones.
     
    6.5 Interpretation.
     
    6.6 Applications.
     
    7 Electrical Resistivity Methods.
     
    7.1 Introduction.
     
    7.2 Basic principles.
     
    7.3 Electrode configurations and geometric factors.
     
    7.4 Modes of deployment.
     
    7.5 Interpretation methods.
     
    7.6 ERT applications and case histories.
     
    7.7 Mise-`a-la-masse (MALM) method.
     
    7.8 Leak detection through artificial membranes.
     
    8 Spontaneous (Self) Potential Methods.
     
    8.1 Introduction.
     
    8.2 Occurrence of self-potentials.
     
    8.3 Origin of self-potentials.
     
    8.4 Measurement of self-potentials.
     
    8.5 Corrections to SP data.
     
    8.6 Interpretation of self-potential anomalies.
     
    8.7 Applications and case histories.
     
    8.8 Electrokinetic (EK) surveying.
     
    9 Induced Polarisation.
     
    9.1 Introduction.
     
    9.2 Origin of induced polarisation effects.
     
    9.3 Measurement of induced polarisation.
     
    9.4 Applications and case histories.
     
    10 Electromagnetic Methods: Introduction and Principles.
     
    10.1 Introduction.
     
    10.2 Principles of EM surveying.
     
    10.3 Airborne EM surveying.
     
    10.4 Seaborne EM surveying.
     
    10.5 Borehole EM surveying.
     
    11 Electromagnetic Methods: Systems and Applications.
     
    11.1 Introduction.
     
    11.2 Continuous-wave (CW) systems.
     
    11.3 Pulse-transient (TEM) or time-domain (TDEM) EM systems.
     
    12 Electromagnetic Methods: Systems and Applications II.
     
    12.1 Very-low-frequency (VLF) methods.
     
    12.2 The telluric method.
     
    12.3 The magnetotelluric (MT) method.
     
    12.4 Magnetic Resonance Sounding (MRS).
     
    13 Introduction to Ground-Penetrating Radar.
     
    13.1 Introduction.
     
    13.2 Principles of operation.
    &