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Time-frequency Analysis of Seismic Signals

English

By (author): Yanghua Wang

A practical and insightful discussion of time-frequency analysis methods and technologies

Timefrequency analysis of seismic signals aims to reveal the local properties of nonstationary signals. The local properties, such as time-period, frequency, and spectral content, vary with time, and the time of a seismic signal is a proxy of geologic depth. Therefore, the timefrequency spectrum is composed of the frequency spectra that are generated by using the classic Fourier transform at different time positions.

Different timefrequency analysis methods are distinguished in the construction of the local kernel prior to using the Fourier transform. Based on the difference in constructing the Fourier transform kernel, this book categorises timefrequency analysis methods into two groups: Gabor transform-type methods and energy density distribution methods.

This book systematically presents timefrequency analysis methods, including technologies which have not been previously discussed in print or in which the author has been instrumental in developing. In the presentation of each method, the fundamental theory and mathematical concepts are summarised, with an emphasis on the engineering aspects.

This book also provides a practical guide to geophysicists who attempt to generate geophysically meaningful timefrequency spectra, who attempt to process seismic data with time-dependent operations for the fidelity of nonstationary signals, and who attempt to exploit the timefrequency space seismic attributes for quantitative characterisation of hydrocarbon reservoirs.

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Product Details
  • Weight: 680g
  • Dimensions: 176 x 247mm
  • Publication Date: 27 Oct 2022
  • Publisher: John Wiley & Sons Inc
  • Publication City/Country: United States
  • Language: English
  • ISBN13: 9781119892342

About Yanghua Wang

Yanghua Wang is a Professor of Geophysics at Imperial College London and the Director of the Resource Geophysics Academy. He is a Fellow of the Royal Academy of Engineering (FREng). He has received the Conrad Schlumberger Award (2021) from the European Association of Geo-scientists & Engineers for his scientific contribution to geophysics.

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