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A New Method for Leak Detection in Gas Pipelines

机译:燃气管道泄漏检测的新方法

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Two types of approaches—physical inspection and mathematical-model simulation—are used to identify a leak in a gas pipeline. The former method can result in an accurate detection of the location and the size of the leak, but comes with the expense of production shutdown and the high cost/long time to run the physical detection, which is very crucial in a long-distance gas pipeline. The latter approach detects a gas leak by solving the governing equations, thus leading to quick evaluation at much lower costs, but with higher uncertainties. Our literature review indicates that a simple, practical, and reliable method to detect a gas leak under the conditions of unknown inlet or outlet gas rate, or unknown inlet or outlet pressure, is highly desirable. In this study, we develop single and multiple rate test methods to detect leaks in a gas pipeline. By conducting multiple rate tests, the location and size of leaks can be detected. The new method can be applied under the conditions of no inlet or outlet rate available or no inlet or outlet pressure available. Because these conditions are not uncommon in gas-pipeline transportation, our method provides a quick and low-computational-cost approach to detect leaks corresponding to different scenarios.
机译:两种方法-物理检查和数学模型模拟-用于识别天然气管道中的泄漏。前一种方法可以准确检测出泄漏的位置和大小,但是会带来生产停工和高成本/长时间运行物理检测的费用,这对于长距离输气非常重要管道。后一种方法通过求解控制方程来检测气体泄漏,从而以较低的成本进行快速评估,但不确定性更高。我们的文献综述表明,非常需要一种简单,实用和可靠的方法来检测未知进气或出气速率或未知进气或出气压力条件下的气体泄漏。在这项研究中,我们开发了单速率和多速率测试方法来检测天然气管道中的泄漏。通过进行多次速率测试,可以检测出泄漏的位置和大小。可以在没有入口或出口速率可用或没有入口或出口压力可用的条件下应用新方法。由于这些条件在天然气管道运输中并不罕见,因此我们的方法提供了一种快速且低计算成本的方法来检测与不同情况对应的泄漏。

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