Assessment of Internal Tubular Coating Using Flow Loop

M. Zakaria, Shalabi A. M Sauri
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Abstract

Assessment of coating performance under flowing condition by using a proprietary flow loop system has been established. The 2 3/8" flow loop was designed to maintain a flow rate of 0.03-0.04 m3/sec, pressure of 3300kPa and temperature of 150°C to simulate actual field condition. Test section consisting of two 35" straight tubes with 45° elbow was internally coated and connected to the flow loop which was run continuously for 14 days with deionized water under the specified test condition. Upon completion, visual inspection, EIS and linear abrasion test were done on the test section to evaluate the coating integrity post exposure. Small blisters were noted at the elbow section potentially due to the improper surface preparation and/or higher fluid velocity at the bend section. Impedance value of 107 Ω/cm2 is a magnitude higher than the acceptance limit of 106 Ω/cm2 while abrasion resistance was found less than the set limit of <100mg/1000 cycles. The flow loop test has been shown to be a reliable tool to evaluate the effect of wall shear stress and fluid erosion on internal tubular coating.
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流环法评价内管涂层
建立了一套流动回路系统,对流动状态下涂层的性能进行了评价。设计的2 3/8”流环的流量为0.03-0.04 m3/秒,压力为3300kPa,温度为150℃,以模拟现场实际情况。测试段由两根45°弯头的35"直管组成,内部涂覆并连接到流动回路,在规定的测试条件下用去离子水连续运行14天。完工后,对测试段进行目测、EIS和线性磨损试验,评估涂层暴露后的完整性。在弯管段出现了小水泡,这可能是由于不适当的表面处理和/或弯管段流体流速过高。阻抗值107 Ω/cm2比验收限值106 Ω/cm2高一个数量级,而耐磨性小于设定限值<100mg/1000次。流环试验是评价管壁剪切应力和流体侵蚀对管壁内涂层影响的可靠工具。
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