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首页> 外文期刊>Hydrology and Earth System Sciences >Fluorescent particle tracers in surface hydrology: A proof of concept in a semi-natural hillslope
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Fluorescent particle tracers in surface hydrology: A proof of concept in a semi-natural hillslope

机译:水文学中的荧光粒子示踪剂:半自然山坡的概念验证

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摘要

In this paper, a proof of concept experiment is conducted to assess the feasibility of tracing overland flow on an experimental hillslope plot via a novel fluorescent particle tracer. Experiments are performed by using beads of diameters ranging from 75 to 1180 1/4m. Particles are sensed through an experimental apparatus comprising a light source and a video acquisition unit. Runoff on the experimental plot is artificially simulated by using a custom-built rainfall system. Particle transits are detected through supervised methodologies requiring the presence of operators and unsupervised procedures based on image analysis techniques. Average flow velocity estimations are executed based on travel time measurements of the particles as they are dragged by the overland flow on the hillslope. Velocities are compared to flow measurements obtained using rhodamine dye. Experimental findings demonstrate the potential of the methodology for understanding overland flow dynamics in complex natural settings. In addition, insights on the optimization of particle size are presented based on the visibility of the beads and their accuracy in flow tracing.
机译:在本文中,进行了概念验证实验,以评估通过新型荧光粒子示踪剂在实验性山坡地带上追踪陆流的可行性。通过使用直径范围从75到1180 1 / 4m的珠子进行实验。通过包括光源和视频采集单元的实验设备来感测颗粒。使用定制的降雨系统人工模拟了实验区的径流。通过需要操作员在场的监督方法和基于图像分析技术的无监督程序来检测粒子迁移。当颗粒被山坡上的陆上水流拖曳时,基于颗粒的传播时间测量值执行平均流速估算。将速度与使用罗丹明染料获得的流量测量结果进行比较。实验结果证明了该方法在理解复杂自然环境中的陆上水流动力学方面的潜力。另外,基于珠粒的可见性及其在流动追踪中的准确性,提出了对粒度优化的见解。

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