Title of article
Deformation, exhumation, and topography of experimental doubly-vergent orogenic wedges subjected to asymmetric erosion
Author/Authors
Cruz، نويسنده , , Leonardo and Teyssier، نويسنده , , Christian and Perg، نويسنده , , Lesley and Take، نويسنده , , Andy and Fayon، نويسنده , , Annia، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2008
Pages
18
From page
98
To page
115
Abstract
We explore the effect of asymmetric erosion and dip angle of the indenter on the internal kinematics, deformation, and exhumation of an experimental doubly-vergent orogenic wedge during transient and steady-state flux conditions. We calculate displacement fields and derive strain and exhumation for several erosion and non-erosion cases, using particle image velocimetry (PIV) analysis. We apply calculated displacement fields to a simple heat equation to explore virtual evolution of thermal structure. Erosion exerts a primary control in the internal kinematics of the experimental wedge. In non-erosion cases, early-formed fore-shears rotate toward the indenter, such that the shear bands become steeper. This effect is more pronounced in prowedge erosion cases, where shear bands become very steep and even overturned. Conversely, retrowedge erosion results in back rotation of early-formed fore-shears, and the shear bands evolved to gently dipping structures. Wedge erosion, in combination with the condition of flux and topographic steady-state, increases density of fore-shears, and controls size, width, and topographic divide migration. Steeply dipping indenters produce overall gentle particle trajectories, and gently dipping indenters favor steep trajectories. Particle velocity, with respect to isotherms, increases where erosion is concentrated and near active fore-shears.
Keywords
Asymmetric erosion , Kinematics , exhumation , PIV , Orogenic wedge , Sandbox Modeling
Journal title
Journal of Structural Geology
Serial Year
2008
Journal title
Journal of Structural Geology
Record number
2226456
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