The Translatory Wave Model for Landslides

J. Elíasson, Þ. Sæmundsson
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引用次数: 1

Abstract

The Saint-Venant equations are usually the basis of numerical models for landslide flows. They are nonstationary and nonlinear. The theory for translatory waves in a prismatic channel and a funneling channel can be used for landslides using the assumption of either turbulent or laminar flow in the slide. The mathematics of translatory waves traveling over dry land or superimposed on another flow are developed. This results in a new slope factor controlling the flow velocity, together with the Chezy coefficient used in previous applications of the translatory wave theory. Flow times for the slide to reach a given destination, slide depth, and velocity can be calculated using the initial magnitude of the flow in the slide. The instabilities of the wave tail are discussed. Three case studies are presented: a submarine slide that started the Tohoku tsunami in Japan, the Morsárjökull rock avalanche in SE Iceland, and the Móafellshyrna slide in central N Iceland.
滑坡的平动波模型
圣维南方程通常是滑坡流数值模型的基础。它们是非平稳和非线性的。在假定滑坡体中存在湍流或层流的情况下,棱形通道和漏斗通道中平动波的理论可用于滑坡。发展了平动波在陆地上传播或叠加在另一流上的数学。这就产生了一个新的控制流速的斜率因子,以及以前在平动波理论应用中使用的Chezy系数。滑块到达给定目的地、滑块深度和速度所需的流动时间可以使用滑块中流体的初始大小来计算。讨论了波尾的不稳定性。本文介绍了三个案例研究:引发日本东北海啸的海底滑坡、冰岛东南部的Morsárjökull岩石雪崩和冰岛中部北部的Móafellshyrna滑坡。
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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