Phosphate mine subsidences deduced from differential interferometry (DInSAR): The Moulares case example (southern Atlas of Tunisia)

Comptes Rendus Geoscience - Tập 343 - Trang 729-737 - 2011
Mehdi Ben Hassen1,2, Noamen Rebai2, Benoit Deffontaines1,3, Mohamed Moncef Turki2, Fredj Chaabani2
1Université Paris-Est Marne-la-Vallée Bât IFI, laboratoire de géomatique, télédétection et modélisation des connaissances, 5, boulevard Descartes, 77454 Marne-la-Vallée cedex 2, France
2Université de Tunis El Manar, faculté des sciences de Tunis, département de géologie, campus universitaire 2092 El Manar Tunis, Tunisia
3Laboratoire de géomatique appliquée, école nationale des sciences géographiques, 6-8, avenue Blaise-Pascal, 77455 Marne-la-Vallée cedex 2, France

Tài liệu tham khảo

Ahmadi, R., 2006. Utilisation des marqueurs morphologiques, sédimentologiques et microstructuraux pour la validation des modèles cinématiques de plissement. Application à l’Atlas méridional tunisien. Thèse en sciences de la terre ; spécialité : géologie structurale, Univ. sciences et des techniques de Nantes, 223 p. Boukadi, N., 1994. Structuration de l’Atlas de Tunisie : signification géométrique et cinématique des nœuds et des zones d’interférences structurales au contact de grands couloirs tectoniques. Thèse de doctorat en sciences géologiques, Univ. Tunis II, faculté des sciences de Tunis, 249 p. Burollet, 1956 Carnec, 1996, 2 examples of the use of SAR interferometry on displacement fields of small spatial extent, Geophys. Res. Lett., 23, 3579, 10.1029/96GL03042 Castany, 1951 Chaabani, F., 1995. Dynamique de la partie orientale du bassin de Gafsa au Crétacé et au Paléogène. Étude minéralogique et géochimique de la série phosphatée Eocène (Tunisie méridionale). Thèse d’État Univ. Tunis II, faculté des sciences de Tunis, 428 p. Chaplin, J.J., Cravotta, C.A., Weitzel, J.B., Klemow, K.M., 2007. Effects of historical coal mining and drainage from abandoned mines on streamflow and water quality in Newport and Nanticoke Creeks, Luzerne County, Pennsylvania, 1999–2000: U.S. geological survey scientific investigations report 2007. 5061, 40 p. Coque, 1962 Contrucci, I., Klein, E., Cao, N.-T., Daupley, X., Bigarré, P., in press. Multiparameter monitoring of a solution mining cavern collapse: first insight of precursors. C. R. Geoscience, 10 p. Costantini, 1999 Delteil, 1991, Relation entre ouvertures théthysienne et mésogéenne en Tunisie, Bull. Soc. Geol. France, 162, 1173 Fruneau, 2005, Monitoring vertical deformation due to water pumping in the city of Paris (France) with differential interferometry, C. R. Geoscience, 337, 1173, 10.1016/j.crte.2005.05.014 Gabriel, 1989, Mapping small elevation changes over large areas: differential radar interferometry, J. Geophys. Res., 94, 9183, 10.1029/JB094iB07p09183 Graham, L.C. 1974. Synthetic interferometer radar for topographic mapping, Proceedings of the IEEE, 62, pp.163–68. Goldstein, 1995, Atmospheric limitations to repeat-track radar interferometry, Geophys. Res. Lett., 22, 17 Guéguen, 2009, Monitoring residual mining subsidence of Nord/Pas-de-Calais coal basin from differential and persistent scatterer interferometry (Northern France), J. Applied Geophys., 69, 24, 10.1016/j.jappgeo.2009.02.008 Hanssen, R.F., 2002. Radar interferometry: data interpretation and error analysis. Kluwer Academic Publishers, 327 p. Hanssen, R.F., Weckwerth, T.M., Zebker, H.A., Klees, R., 1999. High-resolution water vapor mapping from interferometric radar measurements, Science 283, pp. 1297–99. Herrera, 2010, Mapping ground movements in open pit mining areas using differential SAR interferometry, Int. J. Rock Mechanics Mining Sci., 47, 1114, 10.1016/j.ijrmms.2010.07.006 Hewitson, 1995, Pillar recovery using mobile roof supports, Mining Technol., 77, 153 Hfaiedh, M., Attafi, K., Arsovski, M., Jancevski, J., Domurdzanov, N., Turki, M.M., 1991. Carte sismotectonique de la Tunisie. Editée par l’institut national de la météorologie. Hoffmann, J., Roth, A., Voigt, S., 2003. Detecting coal fires in China using differential interferometric synthetic aperture radar (InSAR). Proceedings of the FRINGE 2003 Workshop (ESA SP-550), 1–5 December 2003. Jiang, 2011, Potential of small-baseline SAR interferometry for monitoring land subsidence related to underground coal fires: Wuda (northern China) case study, Remote Sensing Environ., 115, 257, 10.1016/j.rse.2010.08.008 Kappel, 1999, Land subsidence in the United States: the retsof salt mine collapse, U.S. Geological Survey, Circular, 1182, 111 Kuenzer, 2007, Uncontrolled coal fires and their environmental impacts: investigating two arid mining regions in North-central China, Applied Geogr., 27, 42-62, 10.1016/j.apgeog.2006.09.007 Li, 2004, Engineering geology, ground surface movement and fissures induced by underground mining in the Jinchuan Nickel Mine, Eng. Geol., 76, 93, 10.1016/j.enggeo.2004.06.008 Martinez, 1987, Evolution structurale et paléogéographique de la Tunisie, Mem. Soc. Geol. Ital., 38, 34 Massonnet, 1998, Radar interferometry and its application to changes in the Earth's surface, Rev. Geophys., 36, 441, 10.1029/97RG03139 Massonnet, 1994, Radar interferometric mapping of deformation in the year after the Landers earthquake, Nature, 369, 227, 10.1038/369227a0 Massonnet, 1993, The displacement field of the Landers earthquake mapped by radar interferometry, Nature, 364, 8 Meyer, 1998, Results from combining tectonic observations and SAR interferometry for the 1995 Grevena earthquake: a summary, J. Geodynamics, 26, 255, 10.1016/S0264-3707(97)00062-8 Ng, 2009, Assessment of radar interferometry performance for ground subsidence monitoring due to underground mining, Earths Planets Space, 61, 3 O’Connor, 1997, TDR monitoring as a component of subsidence risk assessment over abandoned mines, Int. Rock Mechanics Mining Sci., 34, 230e1 O’Connor, K.M., Crawford, J., Price, K., 2004. Real-Time monitoring of subsidence over an inactive mine in Virginia. 5th Biennial Workshop, Geotechnical Design Seminar, Technical Session II: Subsidence, April 21–23, 2004, Tucson, Arizona. Pathier, E., 2003. Apports de l’interférométrie radar différentielle à l’étude de la tectonique active de Taiwan. Thèse de doctorat en sciences de l’informationgéographique, université de Marne-la-Vallée, 280 p. Perski, 2009, InSAR analyses of terrain deformation near the Wieliczka salt mine. Poland, Eng. Geol., 106, 58, 10.1016/j.enggeo.2009.02.014 Phillips, S., Pearson, D.C., Edwards, C.L., Stump, B.W., 1996. The white pine controlled collapse experiment. LAUR-96-2642, pp. 29 Plattner, 2010, Surface subsidence induced by the Crandall Canyon Mine (Utah) collapse: InSAR observations and elasto-plastic modelling, Geophys. J. Int., 10.1111/j.1365-246X.2010.04803.x Rabus, 2003, The shuttle radar topography mission - a new class of digital elevation models acquired by spaceborne radar ISPRS, J. Photogrammetry Remote Sensing, 57, 241, 10.1016/S0924-2716(02)00124-7 Rosen, 2000, Synthetic aperture radar interferometry, Proceedings of the IEEE, 88, 333, 10.1109/5.838084 Roudaire, E., 1977. Rapport sur la mission des Chotts ; études relatives au projet de mer intérieure. Arch. Missions sc. et litt., Impr. Nat., 3e série, IV, carte. Saïd, 2011, Active oblique ramp faulting in the southern Tunisian Atlas, Tectonophysics, 499, 178, 10.1016/j.tecto.2011.01.010 Sassi, S., 1974. La sédimentation phosphatée au Paléocène dans le Sud et le centre Ouest de la Tunisie. Thèse d’État, Univ. Paris Sud, 292 p. Scharroo, 1998, Precise orbit determination and gravity field improvement for the ERS satellites, J. Geophys. Res., 103, 8113, 10.1029/97JC03179 Taboada Castro, 1994, Dimension and support of underground slate mines, Cuadernos Laboratorio Xeoloxico de Laxe, 19, 419 Taylor, 1994, False alarms and mine seismicity: an example from the Gentry Mountain mining region, Utah. Bull. Seismol. Soc. Am., 84, 350 Wang, 2008, Investigation of catastrophic ground collapse in Xingtai gypsum mines in China, Int. J. Rock Mechanics Mining Sci., 45, 1480, 10.1016/j.ijrmms.2008.02.012 Whyatt, 2008, Catastrophic Failures of Underground Evaporite Mines, 113 Yang, 2010, Monitoring mine collapse by DInSAR, Mining Sci. Technol., 20, 696 Zargouni, F., 1985. Tectonique de l’Atlas méridional de Tunisie : évolution géométrique et cinématique des structures en zone de cisaillement. Thèse d’État, Univ. Louis Pasteur, Strasbourg, 293 p. Zebker, 1986, Topographic mapping from interferometric synthetic aperture radar observations, J. Geophys. Res., 91, 4993, 10.1029/JB091iB05p04993 Zebker, 1992, Decorrelation in interferometric radar echoes, IEEE Trans. Geosci. Remote Sensing, 30, 950, 10.1109/36.175330 Zouari, H., 1995. Évolution géodynamique de l’Atlas centro-méridional de la Tunisie : stratigraphie, analyse géométrique, cinématique et tectono-sédimentaire. Thèse d’État, université de Tunis II, faculté des sciences de Tunis, 227 p.