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Cost effective measuring technique to simultaneously quantify 2D velocity fields and depth-averaged solute concentrations in shallow water flows

机译:成本有效的测量技术,同时量化2D速度场和浅水流量中的深度平均溶质浓度

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摘要

This paper presents a cost-effective methodology to simultaneously measure mixing processes and surface velocity fields in shallow flows using multiple, synchronized low cost cameras and lighting. Velocity fields and depth averaged concentration of a soluble fluorescent tracer are obtained over a 4.8 x 1.22 m(2) measurement area using the new techniques and the results verified against traditional point probe measurements in a laboratory flume. An example of simultaneous velocity/concentration measurement is presented for an instantaneous release of tracer into flow around an obstruction. The method will help to improve the understanding of mixing processes in shallow open channel flows. It is anticipated that the technique will be useful in physical modelling studies where the mixing and hydraulic length scales under investigation are in the order of 1-10 m, for example in compound channels and partially vegetated streams.
机译:本文介绍了一种经济高效的方法,可以使用多个同步的低成本摄像头和照明来同时测量浅流中的混合过程和表面速度场。 使用新技术在4.8×1.22m(2)测量区域中获得可溶性荧光示踪剂的速度场和深度平均浓度,结果验证了实验室水槽中的传统点探针测量结果。 呈现同时速度/浓度测量的示例,用于瞬时释放示踪剂进入梗阻周围的流动。 该方法将有助于提高对浅滩流动中混合过程的理解。 预计该技术将在物理建模研究中有用,其中正在研究的混合和液压长度尺度为1-10μm,例如在复合通道和部分植被的流中。

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