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一种结合红外传感器和浮子的新的水位测量方法,用于非恒定流状态下实验室规模渠道的应用。

A New Water Level Measurement Method Combining Infrared Sensors and Floats for Applications on Laboratory Scale Channel under Unsteady Flow Regime.

机构信息

Laboratoire HydroSciences Montpellier, Centre National de la Recherche Scientifique, Institut de Recherche pour le Développement, Université de Montpellier, 34090 Montpellier, France.

Laboratoire d'étude des Interactions entre Sol-Agrosystème-Hydrosystème, Université de Montpellier, Institut National de la Recherche Agronomique, Institut de Recherche pour le Développement, SupAgro, 34090 Montpellier, France.

出版信息

Sensors (Basel). 2019 Mar 28;19(7):1511. doi: 10.3390/s19071511.

Abstract

In this paper, we studied water transport under an unsteady flow regime in an experimental channel (4 m in length; 3 cm in width). Our experiments implicated some measuring requirements, specifically, a water level (WL) detection technique that is able to measure WL in a range of 2 cm with a precision of 1 mm. The existing WL detection techniques could not meet our measurement requirements. Therefore, we propose a new measurement method that combines two approaches: An "old" water contact technique (float) with a "new" remote non-contact technique (infrared sensor). We used an extruded polystyrene (XPS Foam) that needed some adequate treatment before using it as float in experimental measurements. The combination of IR-sensors with treated float foam lead to a sensitive measurement method that is able to detect flat and sharp flow signals, as well as highly dynamic variations of water surface level. Based on the experimental measurements of WL and outflow at the channel output, we deduced a loop rating curve that is suitable with a power law adjustment. The new measurement method could be extended to larger scale applications like rivers and more complicated cross section geometry of irregular shape.

摘要

在本文中,我们研究了实验渠道(长 4 米,宽 3 厘米)中非稳态流条件下的水输送。我们的实验涉及一些测量要求,特别是能够测量 2 厘米范围内精度为 1 毫米的水位(WL)检测技术。现有的 WL 检测技术无法满足我们的测量要求。因此,我们提出了一种新的测量方法,该方法结合了两种方法:一种“旧”的水接触技术(浮子)和一种“新”的远程非接触技术(红外传感器)。我们使用挤出聚苯乙烯(XPS 泡沫),在将其用作实验测量中的浮子时需要进行一些适当的处理。IR 传感器与处理后的浮子泡沫相结合,形成了一种灵敏的测量方法,能够检测平坦和尖锐的流动信号,以及水面高度的高度动态变化。基于 WL 和通道输出处流出量的实验测量,我们推断出适合幂律调整的回路评级曲线。新的测量方法可以扩展到更大规模的应用,如河流和更复杂的不规则形状的横截面几何形状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79f0/6479713/124d3a917e79/sensors-19-01511-g001.jpg

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