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Landslide Analysis with Incomplete Data: Examples from Colorado and Wyoming

机译:具有不完整数据的Landslide分析:来自科罗拉多州和怀俄明的例子

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Although there is no substitute for careful investigation for slope stability analysis, in reality we are often missing important parameters, yet we still must proceed with the study. Several tools allow us to reduce error and estimate both current and future stability. First, analysis of several cross-sections permits iteration as parameters are modified to meet an expected factor of safety of unity at initial failure for all sections. Concurrently, unknown parameters can be analyzed within reasonable bounds, and these bounds tightened during the iterations. For large slides, there are often smaller failures off the toe that can be used as additional calibration points to constrain input parameters. Sensitivity analysis can help focus testing on vital parameters, reduce error, and improve confidence in the results. Sensitivity analysis unique to the site is preferred, but general studies have shown that cohesion is equally important as friction angle for deeper failures, but is about twice as important for shallow failures. Groundwater levels are about half as important as strength parameters. A third important item is attention to material strength values, including inhomogeneity, anisotropy, peak versus residual, slaking, porewater pressure effects in the capillary zone, and critical state effects such as dilation or contraction. Example applications of these tools are given for sites in Colorado and Wyoming.
机译:虽然没有替代对坡稳定性分析的仔细调查,但实际上我们往往缺少重要参数,但我们仍然必须继续进行该研究。几个工具允许我们降低错误并估计当前和未来的稳定性。首先,对几个横截面的分析允许迭代作为参数被修改,以满足所有部分的初始失败时统一的预期安全系数。同时,可以在合理的边界内分析未知参数,并且在迭代期间收紧这些界限。对于大幻灯片,脚趾通常较小的故障,可用作额外的校准点以限制输入参数。敏感性分析可以帮助对重要参数进行重点测试,减少误差,并提高结果的信心。该网站独特的敏感性分析是优选的,但一般研究表明,凝聚力同样重要的是更深的故障的摩擦角,但对于浅层故障约为两个重要。地下水位大约是强度参数重要的一半。第三项重要项目是注意材料强度值,包括不均匀性,各向异性,峰值与毛细管区中的粘接,沉降,沉降压力效应以及诸如扩张或收缩的临界状态效应。这些工具的示例应用程序在科罗拉多州和怀俄明州的网站给出。

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