首页> 外文会议>NATO Advanced Research Workshop on Massive Rock Slope Failure : New Models for Hazard Assessment >ASSESSING MASSIVE FLANK COLLAPSE AT STRATOVOLCANOES USING 3-D SLOPE STABILITY ANALYSIS
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ASSESSING MASSIVE FLANK COLLAPSE AT STRATOVOLCANOES USING 3-D SLOPE STABILITY ANALYSIS

机译:使用3-D坡稳定性分析评估在斯特罗托沃瓦诺斯的大规模侧翼塌陷

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Massive rock failures pose one of the greatest hazards at stratovolcanoes; more than 20,000 fatalities have resulted worldwide from historical volcano edifice collapses. Although numerous processes can destabilize an edifice, gravitational instability is strongly influenced by the interplay of topography, variable potential failure surfaces, and the three-dimensional (3-D) distributions of rock strength and pore-fluid pressure. We have developed a 3-D slope stability analysis that can search digital topography and determine the locations of minimum stability and the volumes of potential failures. We use this 3-D method to conduct preliminary stability analyses of three stratovolcanoes that have had large rock failures: Mount St. Helens and Mount Rainier in the USA and Volcan Casita in Nicaragua. For the relatively uniform Mount St. Helens edifice, a 3-D analysis using topography alone provides a good predictor of the location and volume of the catastrophic 1980 collapse. At Mount Rainier, both topography and a 3-D distribution of weaker, hydrothermally altered rocks are needed to adequately characterize future hazard. For Casita, the location of the smaller, yet devastating, 1998 failure is predicted using topography and a reconnaissance interpretation of strength based on the distribution of fumarolic activity.
机译:巨大的岩石故障在Stratovolcanoes造成最大的危险之一;从历史的火山大厦崩溃,世界范围内有超过20,000个死亡人。尽管许多方法可以使大厦变得稳定,但重力不稳定受到形貌,可变电位故障表面的相互作用和岩石强度和孔隙流体压力的三维(3-D)分布的强烈影响。我们开发了一个三维坡稳定性分析,可以搜索数字地形并确定最小稳定性的位置和潜在故障的卷。我们使用这款3-D方法进行三个岩石故障的初步稳定性分析:圣海伦山和尼加拉瓜的美国和火山的雷尼尔。对于相对均匀的St. Helens大厦,单独使用地形的3-D分析提供了灾难性1980次崩溃的位置和体积的良好预测因子。在雷尼尔山时,既较弱的地形和三维分布,也需要充分表征未来的危险。对于CASITA,使用地形和基于富马隆活动分布的强度进行预测,预测了较小而毁灭性,1998的失败的位置。

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