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Rheologic Properties and Kinematics of Emplacement of the Chaos Jumbles Rockfall Avalanche, Lassen Volcanic National Park, California

机译:加利福尼亚州拉森火山国家公园混沌落石崩塌的流变特性和运动学

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摘要

The Chaos Jumbles is a rockfall avalanche deposit that was emplaced by three separate events ~ 300 years ago. Deposits from each event are distinguishable on the basis of morphology, size variation of large dacitic surface clasts, and by the color of both the matrix and entrained dacitic blocks. Steep lateral and distal deposit margins and surface features such as folds and apparent strike-slip faults indicate that each rockfall avalanche had a finite yield strength and was being actively deformed and sheared throughout the body of the moving deposit, rather than strictly along a basal surface. Kinematic analysis of the three deposits indicates that each had a very low apparent coefficient of friction and was emplaced at velocities of up to ~100 m/s. These data suggest that each rockfall avalanche can be modeled as a pseudoplastic material undergoing flow parallel compression above a frictionless base. This model allows calculation of deposit volumes ranging from ~1.2 to 1.7 x 108 m3 and also suggests that a future rockfall avalanche from the same location would have a more restricted runout than the previous events.
机译:混乱的混乱是一处崩塌的雪崩矿床,大约在300年前被三场独立的事件所包围。每个事件的沉积物可以根据形态,大型胶结物表面碎屑的大小变化以及基质和夹带的胶结物块的颜色来区分。陡峭的侧向和远侧沉积边缘和诸如褶皱和明显的走滑断层之类的表面特征表明,每个崩塌雪崩具有有限的屈服强度,并且正在整个移动沉积体中主动变形和剪切,而不是严格沿着基底表面。对这三个沉积物的运动学分析表明,每个沉积物的表观摩擦系数都非常低,并且以高达〜100 m / s的速度进行定位。这些数据表明,每个崩塌雪崩都可以模拟为假塑性材料,该假塑性材料在无摩擦基础之上经受平行流动的压缩。该模型可以计算约1.2至1.7 x 108 m3的沉积物量,并且还表明,与以前的事件相比,未来同一地点发生的崩塌雪崩将具有更有限的跳动。

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