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Australian Energy Producers Journal Australian Energy Producers Journal Society
Journal of Australian Energy Producers
 

Session 3. Oral Presentation for: Application of inversion to support exploration and development growth opportunity maturation across the North West Shelf asset, Australia

Matt Strika A *
+ Author Affiliations
- Author Affiliations

A Woodside Energy, Perth, WA, Australia.




Matt holds a Bachelor of Science with First Class Honours in Geology and a Bachelor of Economics from The University of Western Australia. He embarked on his professional journey in 2007, joining Woodside as a Graduate Geoscientist. Over his 18-year tenure with the company, Matt has primarily focused on exploration and new ventures projects across various countries and geological environments, honing his expertise in seismic interpretation and prospect maturation. Currently, he serves as the Technical Lead for Australia Exploration within the Australasia Exploration Team, where he is responsible for managing and expanding the exploration permits in the Australian region.

* Correspondence to: matt.strika@woodside.com

Australian Energy Producers Journal 65, EP24426 https://doi.org/10.1071/EP24426
Published: 19 June 2025

© 2025 The Author(s) (or their employer(s)). Published by CSIRO Publishing on behalf of Australian Energy Producers.

Abstract

Presented on 27 May 2025: Session 3

The Woodside Energy operated North West Shelf asset covers over 5200 km2, with 15 gas fields producing across multiple Triassic to Jurassic aged reservoirs. To support further exploration and infill opportunity maturation, several seismic wave-equation-based amplitude variation with offset (WEB-AVO) studies have been completed, utilising newly reprocessed 3D seismic data. These studies are targeting specific risks, such as reservoir or gas presence, and uncertainties associated with gas-water-contact (GWC) depth and initially in place (GIIP) volume estimates. The WEB-AVO inversion solves directly for the reciprocals of bulk and shear moduli, compressibility (κ) and shear compliance (M), together with density (ρ). Compressibility is very sensitive to porosity, saturation, shale volume and lithology changes when compared to traditional elastic attributes and can be highly effective for addressing GWC uncertainty. A phased approach was employed in each study, initially building a regional rock physics understanding before focussing on specific targets. With WEB-AVO inversion a key initial step is 1D inversion at well control to ensure the robust recovery of the compressibility and shear compliance information required from the seismic data. A 2D arbitrary line WEB-AVO pilot intersecting offset well control was the next stage to characterise the reservoir(s) away from the 1D inversion tests and then optimise inversion parameters spatially. In the final stage a complete 3D inversion for the whole area was completed and this used the parameterisation optimised from the earlier 1D and 2D inversion testing. These products have significantly improved understanding of exploration and infill opportunity risks and volume uncertainties.

To access the Oral Presentation click the link on the right. To read the full paper click here

Keywords: exploration and development, seismic inversion, uncertainty and risk reduction, wave-equation-based amplitude variation with offset.

Biographies

EP24426_B1.jpg

Matt holds a Bachelor of Science with First Class Honours in Geology and a Bachelor of Economics from The University of Western Australia. He embarked on his professional journey in 2007, joining Woodside as a Graduate Geoscientist. Over his 18-year tenure with the company, Matt has primarily focused on exploration and new ventures projects across various countries and geological environments, honing his expertise in seismic interpretation and prospect maturation. Currently, he serves as the Technical Lead for Australia Exploration within the Australasia Exploration Team, where he is responsible for managing and expanding the exploration permits in the Australian region.