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Rock avalanche-debris geometry and implications for rock- avalanche genesis

机译:岩石雪崩 - 碎片几何和对岩石创世纪的影响

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摘要

Rock avalanches have an important impact on the geomorphological evolution of mountain landscapes. Rock avalanche-debris geometry holds important clues related to the processes of the disaster predisposition, occurrence and rapid runout of rock avalanche-debris flows. The morphological features of the debris of the Touzhai rock avalanche deposit in Southwest China are examined as a specific case with the help of threedimensional laser scanning, polarization microscopy (for polished sections) and field-emission scanning electron microscopy (FESEM). The unexpectedly high roundness is the most impressive morphological characteristic of the Touzhai rock avalanche-debris, particularly that of sand-plus silt-sized particles. The shapes of 12 scanned metric-sized boulders are closer to cubes than to spheres. 90% of the 114 scanned subangular blocks with a mean particle diameter of 12.04 cm and an average specific surface area of 0.225 cm(2)/g fall into the spherical domain of Zingg's classification diagram according to their flatness ratio and elongation ratio, and the average sphericity of 0.798 further indicates that they are more akin to cubes compared with spheres. The average form factor of the 1201 sand-sized grains is 0.784 with a standard deviation of 0.044, indicating that they are nearly spherical, and the solidity ranging from 0.951 to 0.974 also strongly shows that these particles are close to smooth spheres. Most of the grains in the size range of 0.075 mm are sub-angular except slaty secondary clay minerals of 0.005 mm based on the visual estimation under FESEM. The detailed qualitative and quantitative contrasts between the morphometric characteristics of the Touzhai rock-avalanche debris and those of the fresh basalt fragments demonstrate that the geometry of the former is dominated by the pre-failure predesign in which the basalt, primary and secondary structures, unloading and weathering acted together. Weathering was the direct contributor to its high roundness. The dynamic fragmentation triggering newly generated ruptures during the post-failure motion was less important, which should be the case in some rock avalanches in other regions. The slope pattern of "large creeping main slide mass + lower intact locked segment" generalized according to this study should be applicable to some other rock avalanches worldwide, and can help the pre-event identification of the potential rock-avalanche sites. Our results support the hypothesis of "aerification of debris" to explain the high mobility of rock avalanches. Highly fragmented source rockmass with enough fine grains should be necessary for the occurrence of rock avalanches and long, rapid runout of the rock avalanche-debris flows. (C) 2019 Elsevier B.V. All rights reserved.
机译:岩雪崩对山地景观的地貌演变产生了重要影响。 Rock Avalanche-Debris Geometry拥有与灾难倾向,发生和迅速跳动的过程相关的重要线索。借助三维激光扫描,偏振显微镜(抛光部分)和现场 - 发射扫描电子显微镜(FESEM),将Zouzhai Rock雪崩矿床碎片的形态特征作为特定情况进行检查。意外的高圆度是Touzhai Rock雪崩碎片最令人印象深刻的形态特征,特别是沙加淤泥粒子的颗粒。 12个扫描的公制型巨石的形状更接近立方体而不是球体。 114个扫描的颗粒块的90%,平均粒径为12.04cm,平均比表面积为0.225cm(2)/ g,根据其平坦度比和伸长率比落入Zingg分类图的球形结构域中,以及与球体相比,平均球形为0.798进一步表明它们更加类似于立方体。 1201砂粒的平均形状因子为0.784,标准偏差为0.044,表明它们几乎是球形的,并且从0.951到0.974的固体也强烈地表明这些颗粒靠近平滑球。大部分尺寸范围<0.075mm的大部分是子角度,除了基于FeSem下的视觉估计的0.005mm的Slaty二次粘土矿物。 Touzhai Rock-Avalanche碎片的形态学特性与新鲜玄武岩片段的详细的定性和定量对比表明,前者的几何形状由玄武岩,初级和二次结构,卸载的预失败预测主导和风化在一起。风化是其高圆度的直接贡献者。在失败后运动期间触发新产生的破裂的动态碎片不太重要,这应该是其他地区的岩石雪崩中的情况。根据本研究的“大型爬行主滑动质量+下完整锁定段”的斜率模式应适用于全球的其他一些岩石雪崩,可以帮助潜在岩石雪崩网站的前列前识别。我们的结果支持“碎片曝气”假设来解释岩石雪崩的高流动性。对于岩石雪崩的发生和岩石雪崩碎片流动的岩石,高度碎片化的源罗马斯应该有足够的粒子。 (c)2019 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Geomorphology 》 |2019年第1期| 60-75| 共16页
  • 作者单位

    Kunming Univ Sci & Technol Fac Civil Engn & Mech Kunming 650500 Yunnan Peoples R China;

    Kunming Univ Sci & Technol Fac Civil Engn & Mech Kunming 650500 Yunnan Peoples R China;

    Kunming Univ Sci & Technol Fac Civil Engn & Mech Kunming 650500 Yunnan Peoples R China;

    Kunming Univ Sci & Technol Fac Civil Engn & Mech Kunming 650500 Yunnan Peoples R China;

    Kunming Univ Sci & Technol Fac Civil Engn & Mech Kunming 650500 Yunnan Peoples R China;

    Kunming Univ Sci & Technol Fac Civil Engn & Mech Kunming 650500 Yunnan Peoples R China;

    Kunming Univ Sci & Technol Fac Civil Engn & Mech Kunming 650500 Yunnan Peoples R China;

    Kunming Univ Sci & Technol Fac Civil Engn & Mech Kunming 650500 Yunnan Peoples R China;

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

    Rock avalanche; High mobility; Deposit; Debris; Geometry; Predesign;

    机译:岩石雪崩;高迁移率;矿床;碎片;几何;预测;

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