Bandwidth-insensitive extended centroid frequency-shift method for near-surface Q estimation

Author:

Li Huijian1ORCID,Liu Xu2ORCID,Liu Bo3,Greenhalgh Stewart4,Al-Shuhail Abdullatif A.2,Chen Yangkang5ORCID

Affiliation:

1. King Fahd University of Petroleum and Minerals, College of Petroleum Engineering and Geosciences, Dhahran 31261, Saudi Arabia. (corresponding author)

2. King Fahd University of Petroleum and Minerals, College of Petroleum Engineering and Geosciences, Dhahran 31261, Saudi Arabia.

3. King Fahd University of Petroleum and Minerals, Electrical Engineering Department, Dhahran 31261, Saudi Arabia.

4. ETH Zurich, Swiss Federal Institute of Technology, Institute of Geophysics, Zurich CH8092, Switzerland. .

5. The University of Texas at Austin, Bureau of Economic Geology, University Station, Austin, Texas 78713-8924, USA.

Abstract

Seismic waves often are strongly attenuated in the near surface. The measurement and compensation for attenuation are crucial for high-resolution seismic imaging. The quality factor ([Formula: see text]), as a measure of attenuation, is usually estimated by frequency-based methods. We have extended the centroid frequency-shift (CFS) method for [Formula: see text] estimation to high loss media without the usual assumption of [Formula: see text]. The adaptability of this approach for an unknown source wavelet also is demonstrated. Skewness and kurtosis have been used for analyzing the spectral shape change during attenuated wave propagation. Synthetic data tests show a strong relationship between skewness and [Formula: see text] factor estimation accuracy for the conventional CFS method. Surprisingly, our extended CFS approach shows frequency band insensitivity and accuracy for strongly attenuating media. The relative insensitivity of the method to the selected or available frequency bandwidth is shown to be the theoretical basis for its good noise immunity. Finally, a layered medium [Formula: see text] inversion method is derived, which is appropriate to vertical seismic profile (VSP) surveying and is applied to a multioffset field VSP data set to obtain a reliable and stable internal [Formula: see text] value depth distribution.

Funder

King Fahd University of Petroleum and Minerals

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

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