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Laboratory tests for the optimization of mesh size for flexible debris-flow barriers

机译:用于优化柔性碎屑 - 流动屏障的网格尺寸的实验室测试

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Flexible barriers can be used within channelized riverbeds as an effective and efficient alternative to protect from debris flows. Their retention capability strongly depends on the size of the mesh openings and the gap between the lower barrier edge and the channel's floor. The question is now whether there is a relation between the grain size distribution of the debris material and the openings of a flexible barrier. Small-scale laboratory tests were performed to study these loading aspects of flexible debris-flow barriers for the Milibach river (Canton Berne, Switzerland). In situ debris material has been used to quantify the influence of different mesh sizes and the gap between the lower barrier edge and the riverbed compared to the d90 grain size and the flow height, where d90 is the maximum diameter of 90 % of the grains. It was possible to study the filling process and the retaining behaviour of the barriers as a function of the mesh size. A reasonable retention was reached with the net having a mesh size and a basal gap smaller than or equal to d90. These relations could be transferred to the field. A dimensional analysis reveals possible dimensionless numbers that can be used to scale the laboratory results. The findings are supported by the results of similar laboratory tests using debris material from different locations and by the available field measurements.
机译:灵活的屏障可在通道化的河床内使用,作为保护免受碎片流动的有效且有效的替代品。它们的保留能力强烈取决于网眼开口的大小和下部阻挡边缘和通道地板之间的间隙。问题现在是碎屑材料的粒度分布与柔性屏障的开口之间是否存在关系。进行小规模的实验室测试,以研究Milibach River(瑞士广州伯尔尼)的柔性碎屑流动障碍的加载方面。原位碎屑材料已被用于量化不同网格尺寸的影响和与D90晶粒尺寸和流量高度相比,下屏障边缘和河床之间的影响,其中D90是谷物的最大直径为90 %的最大直径。作为网格尺寸的函数,可以研究填充过程和屏障的保持行为。用网格尺寸和小于或等于D90的基础间隙达到合理的保持率。这些关系可以转移到该领域。尺寸分析显示可用于缩放实验室结果的可能无量纲数。使用来自不同位置的碎屑材料和可用现场测量的类似实验室测试的结果支持。

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