HR: 0800h
AN: T11D-1288 INVITED [Abstracts]
TI: Measuring fold growth and crustal shortening: a case study from northern Tien Shan
AU: * Avouac, J
EM: avouac@gps.caltech.edu
AF: California Institute of Technology, 1200 E. California MC 100-23
Divison of Geological and Planetary Sciences, Pasadena, CA 91125
United States
AU: Dominguez, S
EM: dominguez@dstu.univ-montp2.fr
AF: Laboratoire Dynamique de la LithosphŠre, UMR CNRS/UMII 5573, Bƒtiment 22 (cc. 60) Place Bataillon,
Montpellier Ce, 34095
France
AU: Charreau, J
EM: Julien.Charreau@univ-orleans.fr
AF: Institut des Sciences de la Terre d'Orl‚ans, Bƒtiment G‚osciences, rue de Saint Amand, BP 6759, 45067
Orl‚ans, Cedex 2
France
AU: Chen, Y
EM: Yan.Chen@univ-orleans.fr
AF: Institut des Sciences de la Terre d'Orl‚ans, Bƒtiment G‚osciences, rue de Saint Amand, BP 6759, 45067
Orl‚ans, Cedex 2
France
AU: Gilder, S
EM: gilder@ipgp.jussieu.fr
AF: Institut de Physique du Globe de Paris, Laboratoire de Pal‚omagnetisme, 4 place Jussieu, 75252 Paris,
Cedex 05
France
AU: Poisson, B
EM: b.poisson@brgm.fr
AF: Bureau de Recherches Geologiques et Minieres, Orleans, 45060, Cedex 2
France
AB:
Active folding can generally be documented from structural geology, geomorphology or subsurface imaging techniques. From the
age and elevation of a folded terrace, one can primarily infer incremental uplift or incremental tilting since terrace
abandonment, a period of time generally covering several seismic cycles. Structural geology and subsurface geometry are more
appropriate to estimate deformation over the longer term, typically a few 100 kyr at least. The identification and dating of
growth strata is then key to estimate the chronology of the deformation. The pattern of uplift, and its time evolution, is
the first accessible information one can retrieve. For most applications, horizontal shortening needs to be estimated as
well. This step requires some structural models of the fold development. For example, in the case of mature fault-bend fold
with no growth strata, converting the uplift pattern derived from a folded terrace into horizontal shortening is
straightforward: uplift at any point along the section is equal to the product of the sinus of local dip angle and of the
shortening across the fold. In many cases this simple approach cannot be applied. Dip angles may not parallel the fault at
depths either because the beds may postdate fold initiation (growth strata) or because the fold might not be mature enough,
or because of non conservation of bed thickness during deformation . We will show how the methodology can be adapted and
expanded in partitucal to identify and overcome these difficulties. We will focus on a case study of an active fold along the
northern front of the Tien Shan. The time evolution of shortening across that particular fold can be estimated accurately
from combining geomorphic measurements, structural measurements and a magnetostratigraphic section.
DE: 8102 Continental contractional orogenic belts
DE: 8107 Continental neotectonics
SC: Tectonophysics [T]
MN: 2004 AGU Fall Meeting