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  4. Sedimentation and tectonic geomorphology adjacent to major active and inactive normal faults, southern Greece
 
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Sedimentation and tectonic geomorphology adjacent to major active and inactive normal faults, southern Greece

Journal
Journal of the Geological Society
Journal Volume
148
Journal Issue
2
Date Issued
1991-12-01
Author(s)
Leeder, M. R.
Seger, M. J.
COLIN PETER STARK  
DOI
10.1144/gsjgs.148.2.0331
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/635696
URL
https://api.elsevier.com/content/abstract/scopus_id/0000294626
Abstract
The active Psatha-Skinos normal fault is uplifting a contrasting variety of lithologies in its footwall, including Mesozoic limestones, ophiolitic peridotites and poorly-consolidated Plio-Pleistocene sediments of the inactive Megara basin. In the latter basin, linear marginal uplands border the sedimentary fill and are interpreted as degraded and segmented scarp lines which exhibit features such as facetted spurs. Drainage domains are defined as groups of drainage basins sharing a common tectono-geological substrate. Contrasting domainisn the footwall of the active fault have given rise to spectacular differences in drainage basin growth and form. In the uplifting footwall, raised coastal terrace levels are present at about 10 and Mm. The latter have yielded corals dated at between 90-126Ka, and have enabled us to calculate uplift and erosional rates. Extrapolation of these rates indicate that some 350 m of footwall relief has been produced over approximately 1 Ma. Most of the sediment eroded from the uplifting footwall is presumed to have been re-sedimented into the Alkyonides Gulf basin plain during this time. The prominent footwall unconformity so-produced forms a fine modern analogue to features seen in ancient syn-rift tilt blocks such as the Viking Graben. Footwall uplift has also backtilted the former depositional surface of the Megara Basin and caused reversal of flow in its axial drainage domain. A variety of depositional environments are documented in the subsiding hangingwall to the coastal fault, including syn-quake talus cones, alluvial fans, intra-fan marshes and swamps, truncated fans, transgressive barriers and spits.
Type
journal article

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