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Extensive Development of Leak Detection Algorithm by Impulse Response Method

机译:脉冲响应法泄漏检测算法的广泛发展

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The oscillatory flows in pipeline systems due to excitation by valve operation are efficiently analyzed by the impulse response method. The impact of leakage is incorporated into the transfer functions of the complex head and discharge. Frequency-dependent friction is used to consider the impact of unsteady friction for laminar condition. Extensive development of the impulse response method was made by considering the sources of friction associated with the local and convective acceleration of velocity for turbulent flow. The genetic algorithm was integrated into the impulse response method to calibrate the location and the quantity of leakage. The calibration function for leakage detection can be made using the pressure-head response at the valve, or the pressure-head and flow response at the section upstream from the valve. The proposed leak detection algorithm shows the potentials for being applied to a simple pipeline system with a single leak or multiple leaks.
机译:通过脉冲响应法可以有效地分析由于阀门操作引起的管道系统中的振荡流。泄漏的影响被并入复合头和排放的传递函数中。频率相关摩擦用于考虑非恒定摩擦对层流条件的影响。通过考虑与湍流速度的局部和对流速度相关的摩擦源,对冲激响应方法进行了广泛的发展。将遗传算法集成到脉冲响应方法中,以校准泄漏的位置和数量。泄漏检测的校准功能可以通过阀上的压头响应或阀上游部分的压头和流量响应来实现。提出的泄漏检测算法表明了将其应用于具有单个泄漏或多个泄漏的简单管道系统的潜力。

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