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Multi-tier method using infrared photography and GPR to detect and locate water leaks

机译:使用红外照相和GPR的多层方法来检测和定位漏水

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This paper presents newly developed method for detecting and locating leaks in water distribution networks utilizing two detection techniques; ground penetrating radar (GPR) and infrared photography (IR). The experimental work and field investigation were carried out over 2 years in three locations in City of Doha, Qatar to capture 115 IR image frames and 23 GPR image frames. Firstly, GPR technology is utilized to accurately define location of buried pipes. After locating these pipes, IR images are collected for simulated and actual leaks. The developed algorithm segments each image into leakage and non-leakage areas and the centroid of each leakage is calculated using Green's theorem. Subsequently, GPR images are introduced as a second layer and overlaid with IR images to compare pipes location with leak location. The method was successfully applied to detect simulated and actual leaks in summer and winter seasons with small margin of error (2.9-5.6%) in estimating leakage areas. When examining the investigated four operating conditions, it was found that the developed method can predict leaks in a more reliable way if the camera height is 2 m and the speed is 1.65 m/s in both simulated and actual leaks. The newly developed method is robust and can aid operators and city engineers in detecting and locating water leaks with high accuracy. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了利用两种检测技术检测和定位供水管网泄漏的新方法。探地雷达(GPR)和红外摄影(IR)。在卡塔尔多哈市的三个地点进行了为期2年的实验工作和现场调查,以捕获115个IR图像帧和23个GPR图像帧。首先,利用GPR技术来精确定义埋管的位置。定位这些管道后,将收集IR图像以进行模拟泄漏和实际泄漏。所开发的算法将每个图像分为泄漏和非泄漏区域,并使用格林定理计算每个泄漏的质心。随后,将GPR图像作为第二层引入并覆盖IR图像,以比较管道位置和泄漏位置。该方法已成功地用于检测夏季和冬季的模拟和实际泄漏,并且在估计泄漏面积时误差很小(2.9-5.6%)。在检查调查的四个工作条件时,发现如果摄像机高度为2 m,模拟和实际泄漏速度均为1.65 m / s,则开发的方法都可以更可靠地预测泄漏。新开发的方法功能强大,可以帮助运营商和城市工程师高精度地检测和定位漏水。 (C)2015 Elsevier B.V.保留所有权利。

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