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Interaction of Strength and Stress in High, Steep Rock Slopes

机译:高陡岩石边坡中强度与应力的相互作用

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The strength of rock mass and the stress in a slope are each complex fields of investigation. They are also intimately related as increasing confining stress makes a rock mass stronger and the strength of a rock mass can limit the magnitude of stress. Whereas these interactions are comparatively well understood for soils, principally through the advances of laboratory soil mechanics, the scale of rock masses, principally the presence of discontinuity surfaces, limits the capacity for laboratory investigation. The interaction of strength and stress in rock slopes is most evident in high, steep slopes where stress is typically greater. The slope angle and failure mechanisms occurring in the rock slope can reveal the ways that strength and stress interact to produce the observed morphology. McKay Bluff, near Nelson, South Island, New Zealand, is a high, steep rock slope affected by marine coastal erosion at its base. Finite element modeling illustrates sensitivities in determination of the stress magnitude in the slope. Engineering geology methods demonstrate the difficulty in precise determination of the rock mass strength. The ranges of these parameters are compared to find a compatible range for the interacting factors. The stress in a range of other high, steep slope types is reviewed and the implications for geomorphic analysis are discussed.
机译:岩体的强度和斜坡上的应力都是研究的复杂领域。它们之间也密切相关,因为围压的增加使岩体更坚固,而岩体的强度会限制应力的大小。尽管这些相互作用主要通过实验室土壤力学的进步而在土壤中得到了比较好的理解,但岩体的规模(主要是不连续表面的存在)限制了实验室研究的能力。岩石边坡中强度与应力的相互作用在应力通常较大的高陡坡度中最为明显。岩石边坡中发生的倾斜角和破坏机制可以揭示强度和应力相互作用以产生观察到的形态的方式。新西兰南岛尼尔森附近的麦凯布拉夫(McKay Bluff)是一个高陡的岩石斜坡,其底部受到海洋沿海侵蚀的影响。有限元建模说明了确定坡度应力大小的敏感性。工程地质方法证明了精确确定岩体强度的困难。比较这些参数的范围,以找到相互作用因素的兼容范围。审查了一系列其他高陡坡类型的应力,并讨论了地貌分析的意义。

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