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Ineos' Experience in Pipeline Leak Detection Using Flow and Pressure Measurements

机译:Ineos在使用流量和压力测量进行管道泄漏检测方面的经验

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This paper has addressed the application of conventional flow and pressure measurements to real-time leak detection. Five case studies are presented covering supercritical and gaseous ethylene, ethane, liquid propylene, multi-product and crude oil pipelines with varying dimensions and complexities. With the exception of TSEP, all the other applications are retrofit to the existing pipeline and instrumentation systems. No special instrument or hardware has been required for the implementation of the LDS. All of the applications involve the interface of the LDS with the site SCADA or PLC systems. The scan interval varies between 2 and 10 seconds.rnAs shown in Table 5, the coriolis flow meters have proven to be reliable for a wide range of fluid type and operating conditions. The operational experience on liquid propylene and both gaseous and supercritical ethylene has been successful. To maintain the accuracy of turbine flow meters for different products, online provers are required to recalibrate the meter curves. The performance of the clamp on ultrasonic flow meter is yet to be assessed after the commissioning of the new instrumentation. Due to the poor track record of clamp on ultrasonic flow meters, special care has been taken to install the meters with external protection and additional viscosity meters.
机译:本文介绍了常规流量和压力测量在实时泄漏检测中的应用。提出了五个案例研究,涉及具有不同尺寸和复杂性的超临界和气态乙烯,乙烷,液态丙烯,多产品和原油管道。除TSEP之外,所有其他应用程序都对现有管道和仪表系统进行了改装。实施LDS不需要任何特殊的仪器或硬件。所有应用程序都涉及LDS与现场SCADA或PLC系统的接口。扫描间隔在2到10秒之间变化。rn如表5所示,科里奥利流量计已被证明在各种流体类型和工作条件下都是可靠的。在液态丙烯以及气态和超临界乙烯方面的操作经验都是成功的。为了保持不同产品涡轮流量计的精度,需要在线证明以重新校准流量计曲线。新仪器调试后,尚需评估超声波流量计上的夹具性能。由于超声波流量计的夹具记录不佳,因此需要特别注意安装带有外部保护和附加粘度计的流量计。

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