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Quantum Bayesian perspective for intelligence reservoir characterization, monitoring and management
Miguel Ángel Lozada Aguilar1, Andrei Khrennikov2, Klaudia Oleschko3
1Aseguramiento Tecnológico en Pemex, Exploración y Producción, Blvd. Adolfo Ruiz Cortines No. 1202, Edificio Pirámide Piso 1, Col. Fracc. Oropeza, Centro, CP 86030, Tabasco, Mexico.
Abstract:
The paper starts with a brief review of the literature about uncertainty in geological, geophysical and petrophysical data. In particular, we present the viewpoints of experts in geophysics on the application of Bayesian inference and subjective probability. Then we present arguments that the use of classical probability theory (CP) does not match completely the structure of geophysical data. We emphasize that such data are characterized by contextuality and non-Kolmogorovness (the impossibility to use the CP model), incompleteness as well as incompatibility of some geophysical measurements. These characteristics of geophysical data are similar to the characteristics of quantum physical data. Notwithstanding all this, contextuality can be seen as a major deviation of quantum theory from classical physics. In particular, the contextual probability viewpoint is the essence of the Växjö interpretation of quantum mechanics. We propose to use quantum probability (QP) for decision-making during the characterization, modelling, exploring and management of the intelligent hydrocarbon reservoir Quantum Bayesianism (QBism), one of the recently developed information interpretations of quantum theory, can be used as the interpretational basis for such QP decision-making in geology, geophysics and petroleum projects design and management.This article is part of the themed issue 'Second quantum revolution: foundational questions'.
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