New Concept Ocean-Bottom Multiphysics (OBMP) Nodes for Reservoir Monitoring

Author:

Menezes Paulo12ORCID,Zerilli Andrea3ORCID,Correa Jorlivan1,Menor Everton1,Ferreira Sergio1,Labruzzo Tiziano3

Affiliation:

1. PETROBRAS-EXP/PEN/AB, Av. Henrique Valadares 28, 4 andar, Rio de Janeiro 20231-030, Brazil

2. Departamento de Geologia Aplicada, Faculdade de Geologia/UERJ, Rua São Francisco Xavier, 524, sala 2009 Bloco A, Rio de Janeiro 20550-900, Brazil

3. Zlemlink Ltda., Rua Taylor 39 sala 805, Rio de Janeiro 24241-060, Brazil

Abstract

Marine-controlled source electromagnetics (CSEM) have been extensively applied to various exploration scenarios worldwide. However, its perceived value and cost relative to seismic and the scarcity of realistic case studies have limited the industry’s interest in time-lapse reservoir-monitoring (4D) applications. A feasible way to make demand for CSEM for 4D-monitoring programs would be to increase the value of information and reduce survey costs by performing joint operations where seismic and CSEM data are acquired during the same survey and at equivalent spatial densities. To this end, we propose a new multiphysics ocean-bottom nodes (OBN) concept and show the industry that CSEM can be a cost efficient and effective integrators to 4D seismic projects. To this end, we conducted a feasibility study demonstrating that horizontal magnetic field components have the required sensitivities and can be used instead of horizontal electric field components in mapping the 3D resistivity distribution and 4D fluid change responses in a given reservoir. This makes engineering a new OBN class simpler and cheaper, as various miniaturized magnetic field sensors are available off-the-shelf or readily working along with packaging and coupling solutions.

Funder

Petrobras

Publisher

MDPI AG

Subject

Geology,Geotechnical Engineering and Engineering Geology

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