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Leak detection in liquid transmission pipelines using simplified pressure analysis techniques employing a minimum of standard and non-standard measuring devices

机译:使用简化的压力分析技术,使用最少的标准和非标准测量设备,检测液体传输管道中的泄漏

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This paper deals with issues of detecting leaks in liquid transmission pipelines. It presents solutions of procedures (algorithms) applied to both negative pressure wave and gradient methods. These algorithms are aimed at achieving a satisfactory level of efficiency of a single leakage diagnosis. The methods are evaluated in terms of their implementation with a minimum number of measuring devices. In the case of the negative pressure wave method, apart from the standard pressure transmitters to measure the pipeline pressure, also the use of non-standard measuring devices, conventionally the so-called correctors, is considered. The signals generated by the correctors are characterized by good correspondence of the measured signal representing a change in the pressure to measurement noise level and the overall pressure transmitter range. All this, in combination with the developed algorithm, which apart from detecting a leak, is aimed at precise identification of a change in the signal related to the wave pressure front, i.e. the so-called inflection point, provides a high efficiency of leak detection. This has been proven by carrying out a number of experimental tests on a laboratory water pipeline. The tests involved simulations of both sudden as well slow leakages. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文涉及检测液体传输管道泄漏的问题。它提供了适用于负压波和梯度法的程序(算法)的解决方案。这些算法旨在达到令人满意的单次泄漏诊断效率水平。根据使用最少数量的测量设备的实施方式对方法进行评估。在负压波法的情况下,除了使用标准压力变送器来测量管道压力外,还考虑使用非标准测量设备,通常是所谓的校正器。由校正器产生的信号的特征在于,代表压力变化的测量信号与测量噪声水平以及整个压力变送器范围的良好对应性。所有这些,与开发的算法相结合,除了检测泄漏外,还旨在精确识别与波压前沿(即所谓的拐点)有关的信号变化,从而提供了较高的泄漏检测效率。通过在实验室输水管道上进行许多实验测试已证明了这一点。测试涉及突然泄漏和缓慢泄漏的模拟。 (C)2016 Elsevier Ltd.保留所有权利。

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