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Fast ERT to estimate pollutants and solid transport variation in water flow: a laboratory experiment

机译:快速ERT估算水流中的污染物和固体运输变化:实验室实验

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The understanding and evaluation of the phenomena related to pollutants diffusion,solid transport or lithic material deposition within a river have a prominent role in hydraulics and fluvial geomorphology. In this respect, the direct measurement of the amount of transported material is certainly one of the most difficult tasks in the field of river hydraulics due to the heterogeneity and representativeness of the samples. In this paper, we investigate the applicability of a very fast (about ten seconds or less), noninvasive electrical resistivity tomography to identify and estimate pollutant and solid transport variations in a fast water flow. To do this, three experimental tests, in a laboratory channel with a flow rate of 0.5 m/s, are presented using both a pollutant flow and different types of solid transport (fine and coarse sands). Data are interpreted by means of classical models that relate the variation in electric conductivity to variations in concentration or in volume fraction of suspended material. Whereas the identification and positioning of the pollutant or solid transport is successful, the estimation of governing parameters still remains mainly qualitative.
机译:对河流中污染物扩散,固体运输或岩性物质沉积相关现象的理解和评估在水力学和河流地貌中具有重要作用。在这方面,由于样品的异质性和代表性,直接测量所输送物质的量无疑是河流水力学领域中最困难的任务之一。在本文中,我们研究了非常快速(约十秒或更短)的非侵入性电阻层析成像技术的适用性,以识别和估算快速水流中的污染物和固体运输变化。为此,提出了在实验室通道中以0.5 m / s的流速进行的三个实验测试,这些测试使用了污染物流和不同类型的固体运输(细砂和粗砂)。通过经典模型解释数据,该模型将电导率的变化与悬浮材料的浓度或体积分数的变化相关联。尽管污染物或固体运输的识别和定位是成功的,但控制参数的估计仍主要是定性的。

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