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Abstract
R. Swennen, F. Roure, and J. W. Granath, eds., Deformation, fluid flow, and reservoir appraisal in foreland fold and thrust belts: AAPG Hedberg Series, no. 1, p.
DOI:10.1306/1025685H13112
Predicting Hydrocarbon Generation and Expulsion in the Southern Apennines Thrust Belt by 2-D Integrated Structural and Geochemical Modeling: Part IStructural and Thermal Evolution
Simone Sciamanna,1 William Sassi,2 Roberto Gambini,3 Jean-Luc Rudkiewicz,4 Fausto Mosca,5 Carlo Nicolai6
1Enterprise Oil Italiana, Rome, Italy; Present address: Repsol-YPF, Buenos Aires, Argentina.
2Institut Franais du Ptrole, Rueil Malmaison, France.
3Enterprise Oil Italiana, Rome, Italy; Present address: OMV, Vienna, Austria.
4Institut Franais du Ptrole, Rueil-Malmaison, France.
5Enterprise Oil Italiana, Rome, Italy; Present address: Humble Geochemical, Houston, Texas, U.S.A.
6Enterprise Oil Italiana, Rome, Italy.
ACKNOWLEDGMENTS
The model results presented here have been achieved using mainly unpublished data available in Enterprise Oil Italiana archive and subordinately from available published data.
This research and development project was supported by the European Community THERMIE Program, contract OG/161/98/FR/IT. We acknowledge the Enterprise Oil Italiana S.p.A. and the Institut Franais du Ptrole for permission to publish the results of this study.
We thank P. Scandone and E. Patacca for providing unpublished stratigraphic data and for fruitful discussions and D. Scrocca for his contribution to the cross section balancing part and also P. Shiner and V. Zucconi.
We acknowledge J. Granath and R. Zoetemeijer for their suggestions to improve this chapter.
ABSTRACT
The structural deformation and the petroleum system of the southern Apennines thrust belt (SATB) are studied along a regional cross section traversing the Monte Alpi–Tempa Rossa fields. The SATB is interpreted as a system of three major structural blocks incorporating the basement and the sediments up to the Apulian platform deposits beneath an allochthonous complex. The Thrustpack software has been used to reconstruct the successive geometries and their progressive burial under foredeep sediments and the allochthonous complex. The bottom of the Apulian platform and the basement are involved in the deformation, and the thickness of the Permian interval, drilled in the foreland, is extended regionally. The timing of the deformation is constrained by the ages of the Pliocene foredeep sediments drilled on top of the Apulian platform. This record was also instrumental to propose a flexure scenario of the migrating foredeep-forebulge system, in which the slope of the topography had to be maintained to a realistic value. These assumptions and boundary conditions were tested by successive, two-dimensional kinematic and thermal reconstructions until a satisfactory match could be obtained with the available temperatures and vitrinite reflectance data. A final good thermal calibration has been obtained for the structural blocks of Monte Alpi and Tempa Rossa. However, the relatively poor quality of the temperature and vitrinite data available for the most hinterland structure questions the conclusions about the validity of our proposed geometry and assumed accumulated thrust displacement. The methodology used in this work is a useful tool in exploration, because it forces one to improve and update structural scenarios and to provide the grounds for highlighting important data gathering to further enhance an evaluation of the hydrocarbon potential at a basin scale. This latter point will be described in a companion chapter.
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