Direct Inversion Method of Brittleness Parameters Based on Reweighted Lp-Norm

Author:

Chen Yaojie,Pan Shulin,Wu Yinghe,Wei Ze,Song Guojie

Abstract

Brittleness is an important factor that indicates shale properties, as well as fracturability, and it can be well-represented using the elasticity parameter Eρ. Seismic inversion allows direct access to the Eρ ofbrittleness parameters. Seismic inversion is a typical ill-posed problem that has an enormous multiplicity of solutions. In order to invert reservoir brittleness parameters more stably and reliably, a direct inversion method for determining brittleness parameters based on a reweighted Lp-norm is proposed, and the reweighted Lp method is introduced to brittleness parameter inversion for the first time. The alternating direction method of multipliers (ADMM) is used to establish the inversion structure and to optimize the objective function in blocks, which effectively improves the convergence speed. We first introduce a reweighted Lp method and establish a pre-stack inversion objective function based on the reweighted Lp method. Then, theoretical simulation data are applied to compare the inversion outcomes of the new method with those of the traditional method, and the effect of the method in this manuscript is verified. Finally, the feasibility of this method is further verified using actual data for experimental analysis. Through an analysis of the experimental results, we find that this method can be well-applied to seismic pre-stack inversion calculation and provides a new direct inversion method for the determination of brittleness parameters for exploration geophysics.

Funder

the Science and Technology Cooperation Project of the CNPC-SWPU Innovation Alliance

Central Government Funds of Guiding Local Scientific and Technological Development

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference35 articles.

1. Rick, R., Michael, J.M., James, E.P., William, V.G., and Donald, K. (2008, January 21–24). A Practical Use of Shale Petrophysics for Stimulation Design Optimization: All Shale Plays Are Not Clones of the Barnett Shale. Proceedings of the SPE Annual Technical Conference and Exhibition, Denver, CO, USA.

2. Seismic petrophysics and isotropic-anisotropic AVO methods for unconventional gas exploration;Goodway;Lead. Edge,2010

3. A shale rock physics model for analysis of brittleness index, mineralogy and porosity in the Barnett Shale;Guo;J. Geophys. Eng.,2013

4. Simplification of the zoepprotz equations;Shuey;Geophysics,1985

5. Bayesian linearized AVO inversion;Arild;Geophysics,2003

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