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On the Acoustic Filtering of the Pipe and Sensor in a Buried Plastic Water Pipe and its Effect on Leak Detection: An Experimental Investigation

机译:埋入式塑料水管中管道和传感器的声过滤及其对泄漏检测的影响:实验研究

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摘要

Acoustic techniques have been used for many years to find and locate leaks in buried water distribution systems. Hydrophones and accelerometers are typically used as sensors. Although geophones could be used as well, they are not generally used for leak detection. A simple acoustic model of the pipe and the sensors has been proposed previously by some of the authors of this paper, and their model was used to explain some of the features observed in measurements. However, simultaneous measurements of a leak using all three sensor-types in controlled conditions for plastic pipes has not been reported to-date and hence they have not yet been compared directly. This paper fills that gap in knowledge. A set of measurements was made on a bespoke buried plastic water distribution pipe test rig to validate the previously reported analytical model. There is qualitative agreement between the experimental results and the model predictions in terms of the differing filtering properties of the pipe-sensor systems. A quality measure for the data is also presented, which is the ratio of the bandwidth over which the analysis is carried out divided by the centre frequency of this bandwidth. Based on this metric, the accelerometer was found to be the best sensor to use for the test rig described in this paper. However, for a system in which the distance between the sensors is large or the attenuation factor of the system is high, then it would be advantageous to use hydrophones, even though they are invasive sensors.
机译:多年来,已经使用声学技术来发现和定位地下供水系统中的泄漏。水听器和加速度计通常用作传感器。尽管也可以使用地震检波器,但通常不将它们用于泄漏检测。本文的一些作者先前已经提出了管道和传感器的简单声学模型,并且使用它们的模型来解释在测量中观察到的一些特征。但是,至今尚未报道在受控条件下使用塑料管同时使用所有三种传感器类型对泄漏进行的同时测量,因此尚未对其进行直接比较。本文填补了知识方面的空白。在定制的埋入式塑料给水管道试验台上进行了一组测量,以验证先前报告的分析模型。就管道传感器系统的不同过滤特性而言,实验结果与模型预测之间存在定性共识。还介绍了数据的质量度量,它是进行分析的带宽之比除以该带宽的中心频率。基于此度量标准,加速度计被认为是用于本文所述测试平台的最佳传感器。然而,对于其中传感器之间的距离较大或系统的衰减因子较高的系统,即使使用水听器是侵入式传感器,使用水听器也是有利的。

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