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The geomorphology and evolution of aeolian landforms within a river valley in a semi-humid environment: A case study from Mainling Valley, Qinghai-Tibet Plateau

机译:半湿润环境下流域内风沙地貌的地貌演化特征-以青藏高原迈灵谷为例

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摘要

This paper systematically analyzes a valley's aeolian landforms in a semi-humid region and presents a model of its contemporary evolution. Mainling Valley of the Yarlung Zangbo River on the Qinghai-Tibet Plateau was chosen as the case study for the analysis of morphometric characteristics and the evolution sequence of aeolian landforms via field data and remote sensing images. The aeolian landforms were primarily composed of aeolian sand belts on river terraces and dunes (sheets) on hillside slopes. Three types of aeolian sand belts were identified based on their dune types. In type Ⅰ belts, an erosive air stream combined with relatively high vegetation cover (10%) produced sparsely distributed parabolic dunes with a high variability of dune heights; in type Ⅱ belts, the continual reworking by the erosive air stream in combination with low vegetation cover (3%) formed more densely distributed barchans and transitional dunes with a moderate variability of dune heights; and in type Ⅲ belts, the gradual evolution from an erosive sand-laden air stream to a saturated sand-laden air stream in combination with low vegetation cover (2%) produced the densest crescentic dunefields but with the least variability in dune heights. Dune sizes increase, dune shapes become uniform, and dune distribution becomes close from type Ⅰ to Ⅲ belts. Lateral linking and merging of the dunes were also observed within the belts. Together this evidence indicates that an evolution sequence may exist. Aeolian dunefields in the belt appear to evolve from embryonic parabolic dunefields to adolescent barchan dunefields and, subsequently, to mature compound crescentic dunefields. As the aeolian sand belt evolves into the mature stage, sand accumulations at the foot of the mountain valley can be steps for sand accumulation on valley-side slopes.
机译:本文系统地分析了半湿润地区山谷的风沙地貌,并提出了其当代演变的模型。以青藏高原雅鲁藏布江干岭谷为例,通过野外数据和遥感影像分析风貌的形态特征和演化序列。风沙地貌主要由河阶上的风沙带和山坡上的沙丘(片状)组成。根据沙丘类型确定了三种风沙带。在Ⅰ类带中,侵蚀性的气流结合较高的植被覆盖率(10%)产生了稀疏分布的抛物线状沙丘,沙丘高度变化很大。在Ⅱ类带中,侵蚀性气流的持续返工与低植被覆盖率(3%)共同形成了分布较密集的沙丘和过渡沙丘,沙丘高度变化适中;在Ⅲ型带中,从侵蚀性的含沙气流逐渐演变成饱和的含沙气流,加上植被覆盖率低(2%),形成了最密集的月牙形沙丘场,但沙丘高度的变化最小。从Ⅰ型到Ⅲ型带,沙丘尺寸增加,沙丘形状变得均匀,沙丘分布变得紧密。在带内还观察到了沙丘的横向连接和合并。这些证据一起表明可能存在进化序列。该带中的风沙丘似乎从胚胎的抛物线沙丘演变成青春期的巴肯沙丘,随后发展成成熟的复合月牙沙丘。随着风沙带发展到成熟期,山谷脚下的沙粒堆积可能是山谷边坡沙粒堆积的步骤。

著录项

  • 来源
    《Geomorphology》 |2014年第1期|27-38|共12页
  • 作者单位

    State Key Laboratory of Earth Surface Processes and Resource Ecology, MOE Engineering Research Centre of Desertification and Blown-Sand Control Beijing Normal University, Beijing 100875, China,Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology, MOE Engineering Research Centre of Desertification and Blown-Sand Control Beijing Normal University, Beijing 100875, China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology, MOE Engineering Research Centre of Desertification and Blown-Sand Control Beijing Normal University, Beijing 100875, China,College of Global Change and Earth System Science, Beijing Normal University, Beijing 100875, China;

    Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology, MOE Engineering Research Centre of Desertification and Blown-Sand Control Beijing Normal University, Beijing 100875, China;

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

    Aeolian landform; Mainling Valley; Morphometric characteristics; Evolutionary sequence;

    机译:风沙地貌;Mainling谷;形态特征进化序列;

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