AVA simultaneous inversion of partially stacked seismic amplitude data for the spatial delineation of lithology and fluid units of deepwater hydrocarbon reservoirs in the central Gulf of Mexico

Author:

Contreras Arturo123,Torres-Verdín Carlos123,Fasnacht Tim123

Affiliation:

1. Chevron Energy Technology Company, Earth Sciences Technology Department Reservoir Characterization Unit, 1500 Louisiana, Houston, Texas 77002.

2. University of Texas at Austin, Department of Petroleum and Geosystems Engineering, 1 University Station, Mail Stop C0300, Austin, Texas 78712.

3. Anadarko Petroleum Corporation, 1201 Lake Robbins Drive, The Woodlands, Texas 77251.

Abstract

This paper describes the successful application of amplitude-versus-angle (AVA) inversion of prestack-seismic amplitude data to detect and delineate deepwater hydrocarbon reservoirs in the central Gulf of Mexico. Detailed AVA fluid/lithology sensitivity analysis was conducted to assess the nature of AVA effects in the study area based on well-log data. Standard techniques such as crossplot analysis, Biot-Gassmann fluid substitution, AVA reflectivity modeling, and numerical simulation of synthetic gathers were part of the AVA sensitivity analysis. Crossplot and Biot-Gassmann analyses indicate significant sensitivity of acoustic properties to fluid substitution. AVA reflectivity and angle-gather modeling indicate that the shale/sand interfaces represented by the top and base of the M-10 reservoir are associated with typical Class III AVA responses caused by relatively low-impedance gas-bearing sands. Consequently, prestack seismic inversion provided accurate and reliable quantitative information about the spatial distribution of lithology and fluid units within the turbidite reservoirs based on the interpretation of fluid/lithology-sensitive modulus attributes. From the integration of inversion results with analogous depositional models, the M-series reservoirs were interpreted as stacked terminal turbidite lobes within an overall fan complex. This interpretation is consistent with previous regional stratigraphic/depositional studies.

Publisher

Society of Exploration Geophysicists

Subject

Geochemistry and Petrology,Geophysics

Reference14 articles.

1. Theory of Propagation of Elastic Waves in a Fluid‐Saturated Porous Solid. I. Low‐Frequency Range

2. Combellas, R., 2003, Depositional and structural evolution of the Middle Miocene depositional episode, East-Central Gulf of Mexico: Ph.D. Dissertation, the University of Texas at Austin.

3. Lp-NORM DECONVOLUTION1

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