Title of article :
Compaction control of topography and fault network structure along strike-slip faults in sedimentary basins
Author/Authors :
Schrank، نويسنده , , Christoph E. and Cruden، نويسنده , , Alexander R.، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2010
Pages :
8
From page :
184
To page :
191
Abstract :
Strike-slip faults commonly display structurally complex areas of positive or negative topography. Understanding the development of such areas has important implications for earthquake studies and hydrocarbon exploration. Previous workers identified the key factors controlling the occurrence of both topographic modes and the related structural styles. Kinematic and stress boundary conditions are of first-order relevance. Surface mass transport and material properties affect fault network structure. Experiments demonstrate that dilatancy can generate positive topography even under simple-shear boundary conditions. Here, we use physical models with sand to show that the degree of compaction of the deformed rocks alone can determine the type of topography and related surface fault network structure in simple-shear settings. In our experiments, volume changes of ∼5% are sufficient to generate localized uplift or subsidence. We discuss scalability of model volume changes and fault network structure and show that our model fault zones satisfy geometrical similarity with natural flower structures. Our results imply that compaction may be an important factor in the development of topography and fault network structure along strike-slip faults in sedimentary basins.
Keywords :
Analogue modelling , Strike-slip faults , topography , Compaction , dilatancy , Shear box
Journal title :
Journal of Structural Geology
Serial Year :
2010
Journal title :
Journal of Structural Geology
Record number :
2226923
Link To Document :
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