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Experimental study for the design of flexible barriers under debris flow impact

机译:泥石流冲击下柔性屏障设计的实验研究

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Debris flows are wide spread phenomena in mountain areas and due to their high velocity and kinetic energy, are very destructive processes in terms of human life and structures.Several studies have been dedicated to both triggering and propagation phases of a mass movement but there is still a lack of knowledge about the behavior of the flow during its impact against an obstacle.In particular, the crucial point is the definition of the impact action, fundamental to design protection barriers, that depends on the flow nature and propagation characteristics (velocity and thickness). These entities are difficult to be determined by means of experimental measurement and consequently several empirical and theoretical relations were proposed in literature. Laboratory tests on scaled channel are also available but they are often affected by the limitation of the scale effects. The aim of this paper is to analyze in detail the impact of a debris flow against an obstacle and present a new method to design these protection structures: this method combines the numerical method DAN and the Brighenti’s method in order to evaluate the flow characteristics and quantify the action applied to the barrier. Laboratory tests have allowed for model calibration and for the validation of the hypothesis about the nature of the impact.
机译:泥石流是山区中广泛传播的现象,由于它们的高速度和动能,对于人类的生命和结构而言是非常破坏性的过程。大量研究致力于大规模运动的触发阶段和传播阶段,但仍然存在缺乏对障碍物撞击过程中的流动行为的了解,尤其是关键点是冲击作用的定义,这是设计保护屏障的基础,取决于流动的性质和传播特性(速度和厚度) )。这些实体很难通过实验测量来确定,因此文献中提出了几种经验和理论关系。也可以在缩放通道上进行实验室测试,但通常会受到缩放效果的限制。本文的目的是详细分析泥石流对障碍物的影响,并提出一种设计这些防护结构的新方法:该方法结合了DAN方法和Brighenti方法,以评估流动特性并量化应用于障碍的动作。实验室测试允许模型校准和验证有关影响性质的假设。

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