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Characterisation of aeolian sediment accumulation and preservation across complex topography

机译:复杂地形中的风入沉积物积累与保存的特征

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摘要

Topography fundamentally influences the distribution and morphology of aeolian landforms via the modification of surface wind flow and the creation of space for sediment deposition. This has been observed at both landform (individual topographic dune forms) and macro-landscape (sand sea) scales. Although previous studies have considered several aspects of the impact of topography on aeolian landforms, the patterns of landscape-scale aeolian sediment accumulation that emerge at the meso-scale, within topographically complex environments have received less consideration.To address this, we present an approach that combines information on the presence of surficial sand (via remote sensing) with the morphometric feature classification method, LandSerf. Using the Cady Mountains in the Mojave Desert as a case study, we explore the relationships between sand cover and topographic indices over length scales of 10(2)-10(3) m. Field observations are then used to refine our understanding of these patterns. Aeolian deposits across the Cady Mountains are strongly controlled by the topography. Although sand cover is often continuous and highly variable in depth, four archetypal "accommodation space types" are identified from the morphometric analysis: Slopes, Plains, Valley-Fills, and Slope-Valley composite. Specific aeolian land -forms within these accommodation spaces may manifest as sand ramps and climbing -falling dunes, particularly on mountain front Slopes, and as sand sheets on downwind Plains within the mountain block. In areas of high sediment supply these may also coalescence, as exemplified by the extensive and compositionally complex Slope-Valley composites in the northern Cady Mountains.In conjunction with field observations, we argue that topography, moderated by proximity to sediment supply, strongly influences the character of the aeolian sedimentary record. However, even within the relatively complex landscape studied here, 90% of the mapped sand accumulation is associated with the four identified accommodation space types. The implication is that areas of such complex topography are amenable to analysis within the scheme outlined and that this can potentially be used to support interpretations of accompanying dune chronologies. (C) 2021 The Author(s). Published by Elsevier B.V.
机译:地貌从根本上通过改变表面风流量和沉积物沉积空间的改变来影响风海地地貌的分布和形态。这两种地貌(个体地形沙丘形式)和宏观景观(沙海)鳞片观察到这一点。尽管以前的研究已经考虑了地形对海岸地貌影响的几个方面,但在形象级的景观量表沉积物积累的模式,在地形复杂的环境中,已经收到了更少的考虑因素。要解决这个方法,我们提出了一种方法这将信息与Morephoric特征分类方法,Landserf相结合了有关结构砂(通过遥感)的存在。在Mojave Desert中使用Cady Mountains作为一个案例研究,我们探讨了10(2)-10(3)米的长度尺度的沙覆盖和地形指数之间的关系。然后使用现场观察来改进我们对这些模式的理解。整个CADY山脉的Aeolian矿床受到拓扑的强烈控制。虽然砂盖在深度中经常连续且高度变化,但是从不同的分析中识别了四种原型“容纳空间类型”:斜坡,平原,谷填充和坡谷复合材料。这些住宿空间内的特定Aeolian陆地背景可能表现为砂坡和攀登 - 特沙丘,特别是在山前坡上,以及山块内的下行平原上的沙床。在高沉积物的区域中,这些可能还可以聚结,如北部CADY山脉的广泛和合成的复杂斜坡 - 谷复合材料所示。与现场观察结合,我们认为地形,通过靠近沉积物供应进行调节,强烈影响河湾沉积纪录的特征。然而,即使在这里研究的相对复杂的景观中,绘制的砂累积的90%也与四个识别的容纳空间类型相关联。该含义是这种复杂的地形的区域可用于在概述的方案内进行分析,并且这可能用于支持随附的沙丘年表的解释。 (c)2021提交人。由elsevier b.v出版。

著录项

  • 来源
    《Geomorphology》 |2021年第15期|107704.1-107704.14|共14页
  • 作者单位

    Univ Leicester Sch Geog Geol & Environm Univ Rd Leicester LE1 7RH Leics England;

    Univ Leicester Sch Geog Geol & Environm Univ Rd Leicester LE1 7RH Leics England;

    Univ Leicester Sch Geog Geol & Environm Univ Rd Leicester LE1 7RH Leics England;

    Univ Northampton Grad Sch Northampton NN1 5PH England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LandSerf; Mojave Desert; Sand ramp; Climbing dune; DEM;

    机译:Landserf;莫哈韦沙漠;沙坡;攀岩沙丘;DEM;

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