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A CALCULATION MODEL FOR LEAK DETECTION AND LOCATION OF SINGLE PIPELINE WITH TWO LEAKS

机译:两个泄漏泄漏检测和单管道位置的计算模型

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Pipeline, as one of the transportation modes, is playing an increasingly important role in national economy. But leakages in pipelines may cause severe problems, such as environmental damages and economic loss. Therefore, how to calculate the leak location and leak size has been investigated for last decades. This paper presents a calculation model based on time-domain analysis solution for detecting and locating two leaks in the pipeline. The model is based on a transient event that is generated by fast closure of the valve at the end of a reservoir-pipeline-valve (RPV) system. The presence of leak causes continuous drops in pressure waves and leak information can be revealed by analyzed the leak transient pressure waves. The time of reflection wave represents the leak location and the magnitude of the piezometric head represents the leak size. The governing equations for calculating the leak size are derived as a system of linear equations based on the Method of Characteristics (MOC). The first transient pressure wave was analyzed to obtain the calculation parameters. Then the applicability of this method is verified on simulated pressure data. The results indicate that this model can perfectly solve two leaks problem in a single pipeline.
机译:作为运输模式之一的管道在国民经济中发挥着越来越重要的作用。但管道中的泄漏可能导致严重的问题,例如环境损害和经济损失。因此,如何计算泄漏位置和泄漏尺寸的最后几十年。本文介绍了基于时域分析解决方案的计算模型,用于检测和定位管道中的两个泄漏。该模型基于瞬态事件,通过在储存 - 管道阀(RPV)系统的末端快速关闭阀门而产生。泄漏的存在导致压力波的连续下降,并且可以通过分析泄漏瞬态压力波来揭示泄漏信息。反射波的时间表示泄漏位置,压电头的大小表示泄漏尺寸。用于计算泄漏尺寸的控制方程是基于特征方法(MOC)的线性方程系统。分析第一瞬态压力波以获得计算参数。然后在模拟压力数据上验证了这种方法的适用性。结果表明,该模型可以在单个管道中完全解决两个泄漏问题。

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