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101.
E. Laville B. Delcaillau M. Charroud O. Dugué L. Ait Brahim G. Cattaneo P. Deluca A. Bouazza 《International Journal of Earth Sciences》2007,96(3):497-515
The South Middle Atlas front constitutes a northeast-trending shear zone, located north of the Neogene Missour basin and east
of the Taza Guercif basin. This paper analyses the Southern Middle Atlas Fault Zone (SMAFZ) deformation since the Pliocene.
The set of structures observed suggests that reverse and thrust faulting along the central part of the SMAFZ are combined
with left-lateral slip along N–S striking faults of its south-western termination and right-lateral faulting along E–NE striking
faults of the east–northeast termination. Thrusts and oblique thrust-related anticlines of the two lateral ramps partly accommodate
north-west directed motion of the African plate. The Thrusts probably resulted from rejuvenation of Jurassic normal faults;
they were active during the Upper Miocene–Pliocene and the Pleistocene. The geometries of positive inversion structures and
buttressing effects are clearly dependent on the geometry and sedimentology of the original basin-controlling fault system
and on the presence of a décollement level. Field mapping is integrated with Landsat imagery and a digital elevation model
to investigate the morphotectonic evolution of the south-eastern range front of the Middle Atlas. Geomorphological features
provide significant information on the processes that govern lateral propagation of active anticlines. Both suggest that the
deformation front may have been active since Pliocene. 相似文献
102.
103.
地理系统工程在战区军事地理电子地图集设计中的应用 总被引:1,自引:0,他引:1
在论述地理系统工程和电子地图集设计的关系的基础上,探讨了战区军事地理电子地图集的性质、用途和构成体系。 相似文献
104.
A series of balanced cross-sections across the Sub-Atlas thrust belt and the northern Ouarzazate basin are used to illustrate
the structural geometry and the timing of deformation at the southern front of the High Atlas Mountains of Morocco. The selected
area is among the best sedimentary records of mountain building of the entire orogenic system. The study of the relationships
between thrusts and synorogenic continental formations enables the unraveling of kinematic sequences and the proposal of a
relative chronology of deformation. Active thrusting in the area occurred in a rather continuous fashion from the Oligocene
to the Pliocene, punctuated by a major erosional phase imprecisely placed in late Oligocene to early Miocene times. Detrital
sedimentary facies indicate that uplift in the hinterland of the High Atlas, to the north of the Sub-Atlas belt, was taking
place already by mid Eocene times, although it might have commenced locally even earlier. Within the Sub-Atlas zone, the exposed
faults did not propagate in a simple piggy-back fashion but show evidence of a complex, synchronous sequence with events of
fault reactivation and out-of-sequence thrusting. 相似文献