Landslide Disparities, Flume Discoveries, and Oso Despair

R. M. Iverson
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引用次数: 2

Abstract

Landslide dynamics is the branch of science that seeks to understand the motion of landslides by applying Newton's laws. This memoir focusses on a 40‐year effort to understand motion of highly mobile—and highly lethal—landslides such as debris avalanches and debris flows. A major component of this work entailed development and operation of the U.S. Geological Survey debris flow flume, a unique, large‐scale experimental facility in Oregon. Experiments there yielded new insights that informed development of mathematical models that were aimed not only at explaining landslide dynamics but also at evaluating landslide and debris flow hazards. The most sophisticated of these models, called D‐Claw, found its first practical application during investigations of the 2014 Oso, Washington, landslide disaster. That event provided indelible lessons about the utility and sociology of science in the real world.
滑坡差异,水槽发现,和Oso绝望
滑坡动力学是科学的一个分支,旨在通过应用牛顿定律来理解滑坡的运动。这本回忆录的重点是40年来的努力,以了解高流动性和高致命性滑坡的运动,如碎片雪崩和泥石流。这项工作的一个主要组成部分是美国地质调查局泥石流水槽的开发和运行,这是俄勒冈州一个独特的大型实验设施。那里的实验产生了新的见解,为数学模型的发展提供了信息,这些模型不仅旨在解释滑坡动力学,而且还旨在评估滑坡和泥石流的危害。其中最复杂的模型被称为D - Claw,它在2014年华盛顿奥索滑坡灾害的调查中首次得到了实际应用。这一事件为科学在现实世界中的效用和社会学提供了不可磨灭的教训。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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