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High-speed video recording of basal shear layers in snow chute flows

机译:高速记录雪道流中的基础剪切层

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摘要

Run-out distances and flow velocities of snow avalanches are mainly determined by frictional processes originating from the interaction with the ground. At the SLF snow chute at the Weissfluhjoch near Davos, a setup was developed which allowed us to record high-speed movies of the basal shear layer of small-scale avalanches with a frame rate of 1000 frames per second. Shear processes could be observed in high-resolution slow motion. Downstream velocity profiles were extracted by a pattern matching algorithm. The comparison of computed profiles with velocity profiles obtained from optical sensors showed good agreement. However, the temporal and spatial resolutions are much higher for the high-speed video data. Because the optical velocity sensors are one-dimensional, we found that they overestimate the velocities when a flow-normal velocity component exists as well. All measured velocity profiles exhibited very high shear rates near the ground. The maximum shear rates were up to 600/s for dry snow and 200/s for wet snow avalanches. The observations of the video images suggested a turbulent motion of the snow in the basal shear layer.
机译:雪崩的跳动距离和流速主要由与地面相互作用产生的摩擦过程确定。在达沃斯附近Weissfluhjoch的SLF雪道上,开发了一种设置,使我们能够以每秒1000帧的帧速记录小规模雪崩的基底剪切层的高速电影。可以在高分辨率慢动作中观察到剪切过程。通过模式匹配算法提取下游速度剖面。计算轮廓与从光学传感器获得的速度轮廓的比较显示出很好的一致性。但是,对于高速视频数据,时间和空间分辨率要高得多。因为光学速度传感器是一维的,所以我们发现当存在流动法向速度分量时,它们也会高估速度。所有测得的速度曲线在地面附近均表现出很高的剪切速率。干雪的最大剪切速率高达600 / s,湿雪崩的最大剪切速率高达200 / s。视频图像的观察结果表明,雪在基底剪切层中发生了湍流运动。

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