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Multiphysics modeling of CO2 sequestration in a faulted saline formation in Italy

Authors :
Alfredo Battistelli
V. Volpi
Jean-Marc Daniel
Marica Marcolini
Giuseppe Gambolati
Olivier Vincke
Federica Donda
Nicola Castelletto
Pietro Teatini
Dan Bossie-Codreanu
Source :
Advances in Water Resources. 62:570-587
Publication Year :
2013
Publisher :
Elsevier BV, 2013.

Abstract

The present work describes the results of a modeling study addressing the geological sequestration of carbon dioxide (CO 2 ) in an offshore multi-compartment reservoir located in Italy. The study is part of a large scale project aimed at implementing carbon capture and storage (CCS) technology in a power plant in Italy within the framework of the European Energy Programme for Recovery (EEPR). The processes modeled include multiphase flow and geomechanical effects occurring in the storage formation and the sealing layers, along with near wellbore effects, fault/thrust reactivation and land surface stability, for a CO 2 injection rate of 1 × 10 6 ton/a. Based on an accurate reproduction of the three-dimensional geological setting of the selected structure, two scenarios are discussed depending on a different distribution of the petrophysical properties of the formation used for injection, namely porosity and permeability. The numerical results help clarify the importance of: (i) facies models at the reservoir scale, properly conditioned on wellbore logs, in assessing the CO 2 storage capacity; (ii) coupled wellbore-reservoir flow in allocating injection fluxes among permeable levels; and (iii) geomechanical processes, especially shear failure, in constraining the sustainable pressure buildup of a faulted reservoir.

Details

ISSN :
03091708
Volume :
62
Database :
OpenAIRE
Journal :
Advances in Water Resources
Accession number :
edsair.doi...........d0834f751e07cb319586659199a9df0c
Full Text :
https://doi.org/10.1016/j.advwatres.2013.04.006