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首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >A Statistical Description of Particle Motion and Rest Regimes in Open-Channel Flows Under Low Bedload Transport
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A Statistical Description of Particle Motion and Rest Regimes in Open-Channel Flows Under Low Bedload Transport

机译:低床载运输下开放式流动中粒子运动和休息制度的统计描述

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In the last decade several efforts were devoted to model sediment-particle transport in rivers as a stochastic process. Experimental observations are therefore needed to validate these models and to provide the correct probability distribution of selected stochastic variables. The kinematics of sand particles is investigated here using nonintrusive imaging to provide a statistical description of bedload transport under incipient motion conditions. In particular, we focus on the alternation between motion (particle steps) and rest regimes to quantify the probabilistic distribution of the particles waiting time, which is suggested by many studies to be responsible for anomalous diffusion. The probability distributions of the particle step time and step length, streamwise and spanwise velocities, acceleration, and waiting time are quantified experimentally. Results suggest that variables describing the particle motion regime are thin-tailed distributed, whereas the waiting times exhibit a power law distribution. A specific class of waiting times during which the grain is observed to oscillate without a net displacement is classified as active and is analyzed separately from the other, so-called deep waiting times. The experimental results, obtained under five different transport conditions, describe grain-scale kinematics and dynamics at different wall shear stress. They provide both a benchmark data set for validating particle-transport numerical simulation and critical input parameters for the stochastic modeling of bedload transport.
机译:在过去的十年中,致力于在河流中模拟沉积物粒子运输的几个努力作为随机过程。因此需要实验观察来验证这些模型,并提供所选随机变量的正确概率分布。这里研究了砂颗粒的运动学,使用非识别成像来提供诸如初期运动条件下的床单运输的统计描述。特别是,我们专注于运动(粒子步骤)和休息制度之间的交替,以量化粒子等待时间的概率分布,这是由许多研究提出的,以负责异常扩散。粒度步进时间和步长,流动和翼展速度,加速度和等待时间的概率分布在实验中量化。结果表明,描述粒子运动制度的变量是薄尾分布,而等待时间表现出电源法分布。观察到谷物的特定等待时间在没有净位移的情况下被观察到振荡,被归类为有效并且与另一个所谓的深度等待时间分开分析。在五种不同的运输条件下获得的实验结果描述了不同墙剪应力下的晶粒级运动学和动力学。它们提供基准数据集,用于验证用于床单运输随机建模的粒子传输数值模拟和关键输入参数。

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