[Movement of a fluvial particle under the influence of coherent structures].

C Sindelar, J Schobesberger, T Gold, K Reiterer, D Worf, C Hauer, H Habersack
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引用次数: 0

Abstract

In a fundamental study the influence of coherent structures on the incipient motion of single fluvial grain was experimentally investigated. To fully characterize coherent structures, the three-dimensional velocity field must be known with high temporal resolution. Using a tr-3D PTV system (tr = time-resolved, PTV = particle tracking velocimetry) this could be achieved. The influence of hairpin vortices and counter-rotating longitudinal vortices (VLSM) on sediment transport has been postulated in several studies, but due to the missing 3D information, evidence has been lacking. In the present "Rolling Stones test series", the incipient motion of a single grain was investigated for smooth and rough beds. It could be shown for the first time that both hairpin vortices and VLSM trigger particle entrainment. Hairpin vortices could also be detected on rough beds, contrary to common hypotheses, and triggered particle movement. The long-term study should also find practical applications in the coming years and increase the accuracy of sediment transport calculations in rivers.

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[相干结构影响下河流颗粒的运动]。
在一项基础研究中,通过实验研究了相干结构对单个河流颗粒起动的影响。为了充分表征相干结构,三维速度场必须具有高的时间分辨率。使用tr-3D PTV系统(tr = 时间分辨PTV = 粒子跟踪测速法),这是可以实现的。发夹涡和反向旋转纵向涡(VLSM)对泥沙输移的影响已在几项研究中得到假设,但由于缺乏3D信息,缺乏证据。在目前的“滚石试验系列”中,对光滑和粗糙床的单个颗粒的初始运动进行了研究。首次表明发夹涡和VLSM都会引发颗粒夹带。发夹涡也可以在粗糙的床上探测到,这与常见的假设相反,并引发粒子运动。这项长期研究还应在未来几年找到实际应用,并提高河流输沙计算的准确性。
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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