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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Rock slope instability and erosion: toward improved process understanding
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Rock slope instability and erosion: toward improved process understanding

机译:岩石边坡失稳和侵蚀:增进对过程的了解

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摘要

Rock slopes in a range of environments are among the landscape elements most sensitive to climate change, the latter affecting rock mass properties, altering slope boundary conditions, and changing geosystem configurations. Major climate-dependent influences promoting destabilization include stress redistribution with changing glacial ice extents, degradation of mountain permafrost, altered slope hydrology and weathering environments, loading and unloading due to deposition and erosion, and changes in the spectrum of magnitude and frequency of driving forces. In steep bedrock terrain, erosional processes control slope morphology by modulating rates of: (i) weathering in response to climate and pre-disposition, (ii) rock slope retreat in response to magnitude and frequency of detachment, and (iii) channel incision or valley infilling in response to variable sediment supply. Modelling landscape evolution and anticipating natural hazards in these environments thus requires deeper insights into the processes driving rock slope instability and erosion. This special issue emphasizes new understanding of rock slope processes through a collection of manuscripts at the forefront of research in the field.
机译:一系列环境中的岩质坡度是对气候变化最敏感的景观要素之一,后者会影响岩体特性,改变坡度边界条件以及改变地球系统构造。导致不稳定的主要气候相关影响包括冰川冰范围变化引起的应力重新分布,多年冻土的退化,斜坡水文学和风化环境的变化,由于沉积和侵蚀引起的装卸,驱动力的大小和频率范围的变化。在陡峭的基岩地形中,侵蚀过程通过调节以下速率来控制斜坡的形态:(i)响应气候和易处置的风化作用;(ii)响应于脱离的幅度和频率而使岩石斜坡后退;以及(iii)切槽或响应于不同的泥沙供应,谷底充填。因此,在这些环境中对景观演化建模并预测自然灾害需要对驱动岩石边坡失稳和侵蚀的过程有更深入的了解。本期特刊着重介绍了该领域研究前沿的手稿,从而对岩石边坡过程有了新的认识。

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