A New Method to Estimate Total Organic Carbon (TOC) Content, an Example from Goldwyer Shale Formation, the Canning Basin

Author:

Alshakhs Munther,Rezaee Reza

Abstract

Background:There is an increasing interest in the Goldwyer Formation of the Canning Basin as a potentially prospective shale play. This Ordovician shaly formation is one of the most prominent source rocks in the Canning Basin. One key property to evaluate the prospectivity of any shale oil or gas is its total organic carbon (TOC) richness.Objectives:This study investigates different TOC estimation techniques and validates the reliability of each, aiming to provide a best estimating approach for local and global applications.Method:The limited well distribution in the large area of the Canning Basin makes a basin-wide study not warranted at this stage. A focused look into the Barbwire Terrace was carried out instead. General TOC estimation methods, such as Schmoker and ∆logR were employed for TOC calculation. TOC relationships of single and multivariate regressions were also derived from wireline data and TOC rock sample measurements.Results:Both Schmoker and ∆logR methods tend to overestimate TOC when compared to the available Rock-Eval pyrolysis TOC measurements. The regression approach have shown to provide the best TOC estiamtes for wells in the Barbwire Terrace, where the best multiple regression approach for the terrace and global application was found to be the one derived from gamma-ray (GR), bulk density (RHOB), and sonic log transit time (DT).Conclusion:The generalized nature of the Schmoker method, as it provides a global relationship between density and TOC is probably the main reason why this approach does not provide a good fit in the case of the Goldwyer Formation. Furthermore, the uncertainty associated with the ∆logR method factors, such as the level of maturity (LOM), and resistivity and sonic baselines greatly influence the TOC estimation in this method, and hence, sometimes do not merit a reliable TOC estimation. The multiple regression approach have shown to be most accurate once lithology and compaction information (GR, RHOB, and DT) were incorporated in the regression process. TOC was reliably estimated for wells inside and outside the Barbwire Terrace, and also for wells of a global lacustrine shale. Such derivation have provided a more accurate technical assessment of the shale play and its prospectivity as a potential unconventional hydrocarbon resource.

Publisher

Bentham Science Publishers Ltd.

Subject

General Energy

Reference12 articles.

1. Cadman S, Pain L, Vuckovic V, Le Poidevin S. Canning Basin, W.A. Australian Petroleum Accumulation, Department of Primary Industries and Energy Bureau of Resource Sciences, Petroleum Resource Branch 1993; (9):

2. Haines P, Ghori K. Rich Oil-prone Ordovician Source Beds, Bongabinni Formation, onshore Canning Basin, Western Australia In: Extended Abstract: American Association of Petroleum Geologists. 2006. Perth, WA AAPG International Conference and Exhibition

3. Triche N, Bahar M. "Shale Gas Volumetrics of Unconventional Resource Plays in the Canning Basin, Western Australia". Society of Petroleum Engineers (SPE). SPE-167078-MS, Brisbane, Australia, 11–13 November 2013.

4. "Western Australia's Petroleum and Geothermal Explorer's Guide", Government of Western Australia, Department of Mines and Petroleum, 2014.

5. Schmoker J. "Use of Formation-Density Logs to Determine Organic-Carbon Content in Devonian Shales of the Western Appalachian Basin and an Additional Example Based on the Bakken Formation of the Williston Basin", Petroleum Geology of the Black Shale of Eastern North America, 1989.

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