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Evolution of debris flow properties and physical interactions in debris-flow mixtures in the Wenchuan earthquake zone

机译:汶川地震区泥石流特性演变及泥石流混合物的物理相互作用

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The 2008 Wenchuan earthquake triggered an exceptional number of landslides. The large amount of loose landslide materials on the steep terrains can easily turn into debris flows by heavy rainfall. During the wet seasons from 2008 to 2011, five destructive debris flows occurred repeatedly in Yingxiu, the study area near the epicenter. This paper presents the evolution of debris flow properties and physical interactions in the debris flow mixtures in the past few years. Seven dimensionless numbers are used to describe the physical interactions. The evolution of the physical interactions over time was influenced by changes in debris-flow compositions, which in turn affected the runout characteristics of the debris flows significantly. Grain contact friction was the most important physical interaction for the five debris flows in the study area. With gradual loss of fine particles over time, the viscosity of the debris-flow mixtures became lower and lower, leading to a change from the dominance of viscous shear over solid-fluid interactions and inertial grain collision to the dominance of solid-fluid interactions and inertial grain collision over viscous shear. With inertial grain collision being more and more important, the flow resistance of the debris flows increased. The mobility of the future debris flows may become smaller and smaller. (C) 2014 Elsevier B.V. All rights reserved.
机译:2008年汶川地震引发了异常数量的滑坡。在陡峭的地形上大量的松散滑坡物质很容易因暴雨而变成泥石流。在2008年至2011年的雨季期间,震中附近的研究区映秀反复发生了五次破坏性泥石流。本文介绍了近几年来泥石流特性和泥石流混合物中物理相互作用的演变。七个无量纲数字用于描述物理相互作用。物理相互作用随时间的演变受泥石流成分变化的影响,进而改变了泥石流的跳动特性。谷物接触摩擦是研究区域内五种泥石流最重要的物理相互作用。随着时间的流逝,细颗粒逐渐消失,泥石流混合物的粘度变得越来越低,从而导致从粘性剪切对固-液相互作用和惯性颗粒碰撞的支配地位向固-液相互作用和支配地位的改变。粘性剪切作用下的惯性晶粒碰撞。随着惯性晶粒碰撞越来越重要,泥石流的流阻增加。未来泥石流的流动性可能会越来越小。 (C)2014 Elsevier B.V.保留所有权利。

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