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Fluvial morphology, sediment-flux steering of axial-transverse boundaries in an experimental basin

机译:Fluvial morphology, sediment-flux steering of axial-transverse boundaries in an experimental basin

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摘要

The distinction between depositional belts associated with the basin axis, flanking piedmont streams is a fundamental attribute of the stratigraphic architecture of intracontinental rift basins. Spatiotemporal distributions of these lithofacies associations are sensitive to a combination of factors, including basin geometry, subsidence rate, sediment discharge; however, most studies have focused on one or two controls, one depositional component (axial or tributary) of the basin-fill succession. A new perspective on how these depositional belts develop under simple but precisely controlled boundary conditions of steady subsidence, sediment flux, water discharge is achieved through the creation of an experimental stratigraphic succession. The Experimental EarthScape run in 2006 (XES06) focused on the geomorphic evolution of sedimentary successions within an asymmetrically subsiding basin, analogous to a simple half graben, containing four interacting supply points of sediment, water. Under the imposed conditions, the experimental system self-organized into an axial stream flanked by transverse fans. Imposition of various combinations of longitudinal, lateral sediment flux showed that the locations, widths of the axial, transverse systems were strongly controlled by relative sediment fluxes ("flux steering"), less influenced by the location of the subsidence maximum, subsidence rate. The axial drainage was dominated by transversely sourced sediment through toe cutting of the transverse fans, except during the highest axial-sediment discharges. Footwall fans persisted even under conditions of very large axial-sediment discharge, aided by topographic inheritance of the steeper transverse depositional slopes.

著录项

  • 来源
    《Journal of sedimentary research》 |2012年第6期|310-325|共16页
  • 作者单位

    Department of Geology, Geophysics, St. Anthony Falls Laboratory, University of Minnesota, Minneapolis, MN 55414, United States;

    Department of Earth, Planetary Sciences, MSC03 2040, University of New Mexico, Albuquerque, NM 87131, United States;

    New Mexico Bureau of Geology, Mineral Resources, New Mexico Institute of Mining, Technology, Socorro, NM 87801, United StatesDepartment of Geological Sciences, Jackson School of Geosciences, University of Texas at Austin, 1 University Station C9000, Austin, TX 78712, United States;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 剥蚀作用、搬运作用、沉积作用;
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