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The influence of rifting on escarpment migration on high elevation passive continental margins

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Author(s):
Sacek, V. ; Braun, J. ; van der Beek, P.
Total Authors: 3
Document type: Journal article
Source: JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH; v. 117, p. 18-pg., 2012-04-19.
Abstract

Using numerical models that couple surface processes, flexural isostasy, faulting and the thermal effects of rifting, we show that fault-bounded escarpments created at rift flanks by mechanical unloading and flexural rebound have little potential to "survive" as retreating escarpments if the lower crust under the rift flank is substantially stretched. In this configuration, a drainage divide that persists through time appears landward of the initial escarpment in a position close to a secondary bulge that is created during the rifting event at a distance that depends on the flexural rigidity of the upper crust. Moreover, the migration of the escarpment to the secondary bulge occurs when the pre-rift topography dips landward, otherwise the evolution of the escarpment is guided by the pre-existing inland drainage divide. To illustrate this new mechanism for the evolution of passive margins, we study the examples of Southeastern Australia and Southeastern Brazil. We propose that a pre-existing inland drainage divide with rift related flank uplift can produce the double drainage divide observed in Southeastern Australia. On the other hand, we conclude that it is possible that the Serra do Mar escarpments on the Southeastern Brazilian margin originated as a secondary flexural bulge during rifting that persisted through time. In both cases, the retreating escarpment scenario is unlikely and the present-day margin morphology can be explained as resulting from rift-related vertical motions alone, without requiring significant post-rift "rejuvenation". (AU)

FAPESP's process: 06/06881-5 - Joint numerical modeling of sedimentary and tectonic processes in sedimentary basins
Grantee:Victor Sacek
Support Opportunities: Scholarships in Brazil - Doctorate (Direct)
FAPESP's process: 09/50493-8 - Crustal and lithospheric mantle models under the Paraná and Chaco-Paraná basins by merging satellite gravity gradiometry, terrestrial gravimetry and geomagnetic and electromagnetic soundings
Grantee:Icaro Vitorello
Support Opportunities: Research Projects - Thematic Grants