首页> 外文会议>International Pipeline Conference >A NOVEL APPROACH TO LEAK SENSITIVITY TESTING OF COMPUTATIONAL PIPELINE MONITORING SYSTEMS FOR HYDROCARBON LIQUID PIPELINES WITH HYDRAULIC SIMULATORS
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A NOVEL APPROACH TO LEAK SENSITIVITY TESTING OF COMPUTATIONAL PIPELINE MONITORING SYSTEMS FOR HYDROCARBON LIQUID PIPELINES WITH HYDRAULIC SIMULATORS

机译:液压模拟器烃液管液管液管液管道监测系统泄漏灵敏度探测的新方法

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In the operation of hydrocarbon liquid pipelines, Computational Pipeline Monitoring (CPM) systems are used for software based leak detection. When installed, CPM systems must meet the regulatory requirements such as API 1130 in the USA and CSA Z662 in Canada. API RP 1130 provides several methods that can be used to test a CPM system: forced parameter testing, simulated leak test (SLT), and fluid withdrawal testing (FWT). Leak tests are performed to establish and verify the leak detection capabilities of the installed CPM system and in some cases test the response of the personnel. One of the primary interests in leak testing is the realism or hydraulic accuracy of the leak signature, in order that the reported leak sensitivity results of the test are reflective of the real performance of the CPM system. Simulated leak tests (SLT's) use an offline pipeline model to generate hydraulically accurate data which can be fed into the CPM model. SLT's provide the most flexible and hydraulically accurate solution to simulating leaks, compared to some of the other API RP 1130 compliant test methods. SLT's do not have leak location restrictions and also correctly models the flow and pressure hydraulic signature of a leak. The paper outlines a novel approach and method to leak simulation, based on its size and shape of the leak hole. This method can be used to represent various sizes of a leak, ranging from a pin hole to a large rupture along the seam. Implementation of the method in a simulator developed with commercial software is discussed. The results of the simulation, namely the hydraulic signatures from the simulated leak and the CPM response, are compared with the widely used leak simulation method using a constant leak rate. Finally, possible applications of this method are considered.
机译:在烃液管道的运行中,计算管道监测(CPM)系统用于基于软件的泄漏检测。安装时,CPM系统必须符合加拿大美国和CSA Z662的API 1130等法规要求。 API RP 1130提供了几种可用于测试CPM系统的方法:强制参数测试,模拟泄漏测试(SLT)和流体撤离测试(FWT)。执行泄漏测试以建立和验证安装的CPM系统的泄漏检测能力,在某些情况下测试人员的响应。泄漏测试中的主要兴趣之一是泄漏签名的现实主义或液压准确性,以便报告的泄漏灵敏度结果反映了CPM系统的实际性能。模拟泄漏测试(SLT)使用离线管道模型来生成液压准确的数据,可以馈入CPM模型。与其他API RP 1130合规测试方法相比,SLT为模拟泄漏提供最灵活和液压准确的解决方案。 SLT没有泄漏位置限制,也可以正确模拟泄漏的流量和压力液压签名。本文概述了一种新的方法和方法,用于泄漏模拟,基于其泄漏孔的尺寸和形状。该方法可用于表示各种尺寸的泄漏,从销孔到沿接缝的大破裂。讨论了使用商业软件开发的模拟器中的方法的实现。模拟结果,即来自模拟泄漏的液压签名和CPM响应,与使用恒定泄漏率的广泛使用的泄漏仿真方法进行比较。最后,考虑了这种方法的可能应用。

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