Interpretation of fractures and joint inversion using multicomponent seismic data — Marcellus Shale example

Author:

Yuan Shukun1,DeAngelo Michael V.2,Hardage Bob A.2

Affiliation:

1. China University of Geosciences, School of Energy Resources, Beijing, China and Sinopec International Petroleum Exploration and Production Corporation, Beijing, China..

2. The University of Texas at Austin, Bureau of Economic Geology, Austin, Texas, USA..

Abstract

Evaluating and exploiting unconventional complex oil and gas reservoirs such as the Marcellus Shale gas reservoirs within the Appalachian Basin in Pennsylvania, USA, have gained considerable interest in recent years. Technologies such as conventional 3D seismic, horizontal drilling, and hydraulic fracturing have been at the forefront of the effort to exploit these resources. Recently, multicomponent seismic technologies have been integrated into some resource evaluation and reservoir characterization activities of low-permeability rock systems. We evaluated how multicomponent seismic technology provides value to reservoir characterization in shale gas exploration. We improved fault interpretations and natural fracture identifications by means of [Formula: see text] and [Formula: see text] integrated interpretation. In addition, using P-P-/P-SV-joint inversion, we extracted key parameters, such as [Formula: see text] ratio and density, that improve stratigraphic interpretation and rock-property descriptions of shale gas reservoirs.

Publisher

Society of Exploration Geophysicists

Subject

Geology,Geophysics

Reference22 articles.

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