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首页> 外文期刊>Journal of Hydraulic Engineering >Dynamics of Particle Clouds in Ambient Currents with Application to Open-Water Sediment Disposal
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Dynamics of Particle Clouds in Ambient Currents with Application to Open-Water Sediment Disposal

机译:环境电流中粒子云的动力学及其在开水沉积物中的应用

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Flow visualization experiments were performed in a glass-walled recirculating flume to observe the fate of sediments released instantaneously in a current. For releases at the surface, criteria were developed to characterize ambient currents as "weak," "transitional," or "strong" as a function of particle size. In weak ambient currents, particle clouds were advected downstream with a velocity equal to the ambient current, but otherwise their behavior and structure were similar to those in quiescent conditions. A substantial portion of the mass initially released, up to 30%, was not incorporated into the parent cloud and formed the trailing stem. This percentage was dependent on the initial release variables, with the greatest sensitivity on particle size. The "loss" of sediment during descent, defined as the fraction of mass missing a designated target with a radius equal to the water depth, was quantified and found to increase sharply with current speed. Laws of geometric, kinematic, and dynamic similitude provide a basis for scaling laboratory results to the real world and formulating guidelines to reduce the losses that could result from open-water sediment disposal.
机译:在玻璃墙的循环水槽中进行流动可视化实验,以观察电流瞬时释放的沉积物的命运。对于表面上的释放,制定了将环境电流表征为“弱”,“过渡”或“强”的标准,以作为粒径的函数。在弱环境电流中,粒子云以等于环境电流的速度向下游平流,但其行为和结构与静态条件下的相似。最初释放的大部分质量(最多30%)没有合并到母云中并形成尾随茎。该百分比取决于初始释放变量,对粒度的敏感性最高。对下降过程中沉积物的“损失”(定义为缺少指定目标的半径等于水深的质量分数)进行了量化,发现其随当前速度急剧增加。几何,运动学和动态相似性定律为将实验室结果扩展到现实世界并制定指导方针以减少可能因露天水域沉积物处置而造成的损失提供了基础。

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