Fast Automatic Detection of Geological Boundaries from Multivariate Log Data Using Recurrence

Manual interpretation of data collected from drill holes for mineral or oil and gas exploration is time-consuming and subjective. Identification of geological boundaries and distinctive rock physical property domains is the first step of interpretation. We introduce a multivariate technique, that ca...

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Veröffentlicht in:arXiv.org 2019-09
Hauptverfasser: Zaitouny, Ayham, Small, Michael, Hill, June, Emelyanova, Irina, M Ben Clennell
Format: Artikel
Sprache:eng
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Zusammenfassung:Manual interpretation of data collected from drill holes for mineral or oil and gas exploration is time-consuming and subjective. Identification of geological boundaries and distinctive rock physical property domains is the first step of interpretation. We introduce a multivariate technique, that can identify geological boundaries from petrophysical or geochemical data. The method is based on time-series techniques that have been adapted to be applicable for detecting transitions in geological spatial data. This method allows for the use of multiple variables in detecting different lithological layers. Additionally, it reconstructs the phase space of a single drill-hole or well to be applicable for further investigations across other holes or wells. The computationally cheap method shows efficiency and accuracy in detecting boundaries between lithological layers, which we demonstrate using examples from mineral exploration boreholes and an offshore gas exploration well.
ISSN:2331-8422
DOI:10.48550/arxiv.1910.01581