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Mitigating Cathodic Shielding Effect on Plant Corridor Pipelines CP System Using Computer Simulation

机译:使用计算机仿真减轻对植物走廊管道CP系统的阴极屏蔽效果

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In petrochemical plants, feed pipelines are located in the utility area that is called corridor pipelines. Usually these pipelines are buried underground and cathodicaliy protected. An existing cathodic protection (CP) system of 12 parallel pipelines comprising shallow distributed anodes was simulated using commercial software based on the boundary element method. The simulated readings were compared to the field measurements.The purpose of this paper is to verify the hypothesis of uniform potential and current distribution on the pipelines which are electrically bonded and protected by distributed shallow anodes through simulation approach. Then provide the best anodes distribution layout that would provide uniform protection for all 12 parallel pipelines of different diameters.The computer software simulation results show that distributed anode system will offer different protection potentials on each pipeline depending on the distance from the anode, diameter of the pipe and shielding of other pipelines. The results indicated that deep well anode impressed current cathodic protection (ICCP) system would provide more uniform protection to pipelines than distributed shallow anodes layout
机译:在石化植物中,饲料管道位于公用事业区域,称为走廊管道。通常这些管道被埋在地下和阴极保护。使用基于边界元法的商业软件模拟了包括浅分布式阳极的12个平行管道的现有阴极保护(CP)系统。将模拟读数与现场测量进行了比较。本文的目的是验证通过模拟方法通过分布浅阳极电键合和保护的管道上均匀电位和电流分布的假设。然后提供最佳阳极分布布局,将为不同直径的所有12个并行管道提供均匀保护。计算机软件仿真结果表明,分布式阳极系统将根据距阳极,直径的距离提供各个管道的不同保护电位。管道和屏蔽其他管道。结果表明,深井阳极印象印象电流阴极保护(ICCP)系统将为管道提供比分布式浅阳极布局更均匀的保护

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