Arid
DOI10.1016/j.jsg.2014.05.025
Distribution of active faulting along orogenic wedges: Minimum-work models and natural analogue
Yagupsky, Daniel L.1; Brooks, Benjamin A.2,6; Whipple, Kelin X.3; Duncan, Whipple C.4; Bevis, Michael5
通讯作者Yagupsky, Daniel L.
来源期刊JOURNAL OF STRUCTURAL GEOLOGY
ISSN0191-8141
出版年2014
卷号66页码:237-247
英文摘要

Numerical 2-D models based on the principle of minimum work were used to examine the space-time distribution of active faulting during the evolution of orogenic wedges. A series of models focused on thin-skinned thrusting illustrates the effects of arid conditions (no erosion), unsteady state conditions (accretionary influx greater than erosional efflux) and steady state conditions (accretionary influx balances erosional efflux), on the distribution of fault activity. For arid settings, a general forward accretion sequence prevails, although a significant amount of internal deformation is registered: the resulting fault pattern is a rather uniform spread along the profile. Under fixed erosional efficiency settings, the frontal advance of the wedge-front is inhibited, reaching a steady state after a given forward propagation. Then, the applied shortening is consumed by surface ruptures over a narrow frontal zone. Under a temporal increase in erosional efficiency (i.e., transient non-steady state mass balance conditions), a narrowing of the synthetic wedge results; a rather diffuse fault activity distribution is observed during the deformation front retreat. Once steady balanced conditions are reached, a single long-lived deformation front prevails.


Fault activity distribution produced during the deformation front retreat of the latter scenario, compares well with the structural evolution and hinterlandward deformation migration identified in southern Bolivian Subandes (SSA) from late Miocene to present. This analogy supports the notion that the SSA is not in steady state, but is rather responding to an erosional efficiency increase since late Miocene.


The results shed light on the impact of different mass balance conditions on the vastly different kinematics found in mountain ranges, suggesting that those affected by growing erosion under a transient unbalanced mass flux condition tend to distribute deformation along both frontal and internal faults, while others under balanced conditions would display focused deformation on a limited number of steady structures. (C) 2014 Elsevier Ltd. All rights reserved.


英文关键词Minimum work Orogenic wedge Erosion Thrust activity Bolivian Subandes
类型Article
语种英语
国家Argentina ; USA
收录类别SCI-E
WOS记录号WOS:000340978000015
WOS关键词FOLD-THRUST BELT ; SOUTHERN BOLIVIA ; MOUNTAIN BELTS ; MECHANICAL MODELS ; STRUCTURAL STYLES ; SUBANDEAN THRUST ; ENERGY-BALANCE ; CENTRAL ANDES ; STEADY-STATE ; EROSION
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
来源机构United States Geological Survey ; Arizona State University
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/183676
作者单位1.Univ Buenos Aires, FCEN, Inst Estudios Andinos Don Pablo Groeber IDEAN, Dept Ciencias Geol,Lab Modelado Geol, RA-1053 Buenos Aires, DF, Argentina;
2.Univ Hawaii, Sch Ocean & Earth Sci & Technol, Honolulu, HI 96822 USA;
3.Arizona State Univ, Sch Earth & Space Explorat, Tempe, AZ USA;
4.Univ Massachusetts, Dept Geosci, Amherst, MA 01002 USA;
5.Ohio State Univ, Columbus, OH 43210 USA;
6.US Geol Survey, Earthquake Sci Ctr, Menlo Pk, CA 94025 USA
推荐引用方式
GB/T 7714
Yagupsky, Daniel L.,Brooks, Benjamin A.,Whipple, Kelin X.,et al. Distribution of active faulting along orogenic wedges: Minimum-work models and natural analogue[J]. United States Geological Survey, Arizona State University,2014,66:237-247.
APA Yagupsky, Daniel L.,Brooks, Benjamin A.,Whipple, Kelin X.,Duncan, Whipple C.,&Bevis, Michael.(2014).Distribution of active faulting along orogenic wedges: Minimum-work models and natural analogue.JOURNAL OF STRUCTURAL GEOLOGY,66,237-247.
MLA Yagupsky, Daniel L.,et al."Distribution of active faulting along orogenic wedges: Minimum-work models and natural analogue".JOURNAL OF STRUCTURAL GEOLOGY 66(2014):237-247.
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