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Estimate of a spatially variable reservoir compressibility by assimilation of ground surface displacement data.

Authors :
Zoccarato, C.
Baù, D.
Bottazzi, F.
Ferronato, M.
Gambolati, G.
Mantica, S.
Teatini, P.
Source :
Proceedings of the International Association of Hydrological Sciences (PIAHS); 2015, Vol. 372, p351-356, 6p
Publication Year :
2015

Abstract

Fluid extraction from producing hydrocarbon reservoirs can cause anthropogenic land subsidence. In this work, a 3-D finite-element (FE) geomechanical model is used to predict the land surface displacements above a gas field where displacement observations are available. An ensemble-based data assimilation (DA) algorithm is implemented that incorporates these observations into the response of the FE geomechanical model, thus reducing the uncertainty on the geomechanical parameters of the sedimentary basin embedding the reservoir. The calibration focuses on the uniaxial vertical compressibility cM, which is often the geomechanical parameter to which the model response is most sensitive. The partition of the reservoir into blocks delimited by faults motivates the assumption of a heterogeneous spatial distribution of c<subscript>M</subscript> within the reservoir. A preliminary synthetic test case is here used to evaluate the effectiveness of the DA algorithm in reducing the parameter uncertainty associated with a heterogeneous c<subscript>M</subscript> distribution. A significant improvement in matching the observed data is obtained with respect to the case in which a homogeneous c<subscript>M</subscript> is hypothesized. These preliminary results are quite encouraging and call for the application of the procedure to real gas fields. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
21998981
Volume :
372
Database :
Complementary Index
Journal :
Proceedings of the International Association of Hydrological Sciences (PIAHS)
Publication Type :
Conference
Accession number :
111110960
Full Text :
https://doi.org/10.5194/piahs-372-351-2015