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Research and Utilization of Downhole Dynamic Corrosion Test Device

机译:井下动态腐蚀试验装置的研究与利用

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With the lengthen of the production time continuously, and the adjustment and implementation of development programs constantly, the situation of Jiangsu Oil field well casing will become worse, even damaged gradually, while corrosion is one of the main factors to cause casing leakage in Jiangsu Oil field. In order to study the corrosion mechanism and influencing factors, we developed downhole dynamic simulation experiment device. The device is mainly composed of the recycle loop system, temperature control system, pressure control system, the main riser, and the buffer vessel. It implements the control of factors impact on the oil casing corrosion such as temperature, partial pressure, flow rate etc and helps us study the corrosion behavior of downhole tubing and casing. The results of weightlessness and electron microscope scanning show that the flow velocity and flow pattern is the main factors of maximum casing corrosion near the oil pump suction rate, and the local corrosion by CO_2 is given priority to, this is consistent with the situation of field casing corrosion. It also shows that this experimental device has the advantages of reasonable structure, stable and reliable performance, easy operation, strong simulation and practicality.
机译:随着生产时间的延长持续延长,持续调整和实施发展方案,江苏油田井壳会变得更糟,甚至逐渐受到损坏,同时腐蚀是引起江苏漏液泄漏的主要因素之一场地。为了研究腐蚀机制和影响因素,我们开发了井下动态仿真实验装置。该装置主要由回收环系统,温度控制系统,压力控制系统,主提升管和缓冲容器组成。它实现了对诸如温度,部分压力,流速等油套腐蚀的因素的控制,并有助于我们研究井下管道和套管的腐蚀行为。失重和电子显微镜扫描的结果表明,流速和流量模式是油泵吸入率附近最大套管腐蚀的主要因素,Co_2的局部腐蚀优先,这与现场的情况一致套管腐蚀。它还表明,该实验装置结构合理,性能稳定可靠,操作简便,仿真和实用性。

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