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A mechanism for the origin and development of the large-scale dunefield on the right flank of the lower reach of Laoha River, Northeast China

机译:东北老哈河下游右岸大型沙丘形成与发展的机制

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摘要

By viewing satellite imagery, a striking large-scale dunefield can be clearly perceived, with a size of nearly 63 km long and 11 km wide, and trending NE–SW, on the right flank of the lower Laoha River, Northeast China. By means of remote sensing imagery analysis and field observation as well as a comparison with a small-scale dunefield on the right flank of the lower Xiangshui River, analogous to the case of the lower Laoha River, this paper presents a new mechanism for its origin and development. The results show that:(1) the large-scale dunefield bears a tile-style framework overwhelmingly composed of transverse barchanoid ridges perpendicular to the predominant winds, and inlaid diverse blowouts. (2) The small-scale dunefield, referred to as a primary structural unit of the large one, is typical of an incipient dunefield, following the same rules of evolution as the larger. (3) A succession of barchanoid ridge chains can steadily migrate downwind in much the same manner as surface wave propagation in air or water stimulated by an incised valley, and ultimately tend to bear roughly the same wavelength and amplitude under stable climate and hydrologic regimes. (4) The first ridge chain acquires its sand source substantially from the downwind escarpments exposing the loose Quaternary sandy sediments to the air, while the ensuing ridges derive their sands dominantly from in situ deflation of the underlain Quaternary loose sandy sediments in blowouts, partly from the upwind ridges through northern elongated horns. Theoretically, the sands from riparian escarpments can be transported by wind to the downwind distal end of a dunefield after sufficient long du-ration. (5) The lower Laohahe region experienced probably three significant climatic changes in the past, corresponding to the three active dune belts, suggesting that once a large-scale dunefield occurs, it is nearly impossible to be completely stabilized, at least in its central portions. At present, seasonal shrinkage and stagnation of the lower Laoha River, wide-spread farming and afforestation in the valley, and establishing windbreaks downwind of the valley as well as surrounding the dunefield, appear to have significantly modified local flow fields and sand sources, engendering significant degrada-tion of the dunefield.
机译:通过查看卫星图像,可以清楚地看到一个引人注目的大型沙丘,其大小长近63公里,宽11公里,并且在中国东北老哈河下游右翼呈NE–SW趋势。通过遥感影像分析和野外观察以及与湘水河下游右岸的小规模沙丘进行比较,类似于老哈河下游,本文提出了一种新的成因机制。和发展。研究结果表明:(1)大型沙丘地基以瓦状结构为主,其垂直于主要风的横生横须脊呈杂乱状,并镶嵌有多种喷出物。 (2)小规模的沙丘被称为大型沙丘的主要结构单元,是初期沙丘的典型特征,遵循与大沙丘相同的演化规律。 (3)一连串的类钳线脊链可以在顺风中平稳地迁移,其方式与在切开的山谷刺激下的空气或水中的表面波传播大致相同,并且在稳定的气候和水文条件下最终趋于承受大致相同的波长和振幅。 (4)第一个山脊链基本上是从顺风陡壁获取其砂源的,这使松散的第四纪砂质沉积物暴露在空气中,而随后的山脊则主要是从井下垫层的第四纪松散砂质沉积物的原位放气中获得沙土,部分是来自逆风脊穿过北部细长的角。从理论上讲,经过足够长的持续时间后,来自河岸悬崖的沙子可以通过风运到沙丘的顺风远端。 (5)老哈河下游地区过去可能经历了三个重大的气候变化,对应于三个活跃的沙丘带,这表明一旦发生大规模的沙丘,至少在其中部几乎不可能完全稳定。 。目前,老哈河下游的季节性萎缩和停滞,山谷中广泛的耕作和造林以及山谷顺风以及沙丘周围的防风林,似乎已显着改变了当地的流场和沙源,沙丘的严重降解。

著录项

  • 来源
    《寒旱区科学(英文版)》 |2015年第1期|29-39|共11页
  • 作者单位

    Hunan Normal University, Changsha, Hunan 410081, China;

    Hunan University, Changsha, Hunan 410082, China;

    Climatic Center of Inner Mongolia, Huhhot, Inner Mongolia 010041, China;

    Hunan Normal University, Changsha, Hunan 410081, China;

    Hunan Normal University, Changsha, Hunan 410081, China;

    Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou, Gansu 730000, China;

    Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou, Gansu 730000, China;

    Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou, Gansu 730000, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-19 03:41:30
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