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Study on Acoustic Cavitation and Magnetic Coupling Wax Control Technology

机译:声空化与磁耦合蜡控制技术研究

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摘要

To solve the wax deposition problem of high-pour-point and high-waxy oil wells, a new acoustic cavitation and magnetic coupling shaft wax control technology was proposed. Experimental research and field tests were conducted. This wax control technology can achieve the purpose of freezing point depression, viscosity reduction by emulsification, and wax control through the combined effect of cavitation, acoustic vibration, and magnetic intensification. Laboratory experiments showed that after acoustic cavitation and magnetic coupling treatment, the viscosity reduction ratio of high-pour-point oil was over 25.5% at 30° C;;the freezing point was decreased from 32° C to 27° C, a 15.6% reduction;;the wax crystal structure of the oil samples was changed from crude, thick, and dense to fine, thin, and sparse. Field tests showed that the acoustic cavitation and magnetic coupling wax control device can significantly extend the well's wax deposit cycle by more than 30 days and reduce the wax thickness (Yumen Oilfield). Using this technology, the flushing period was extended more than two times, with a maximum up to nine times, and the normal production time was also prolonged (Zhundong Oilfield in Xinjiang). The results are useful for the popularization and application of the new shaft wax control technology for high-freezing-point and high-waxy oil wells.
机译:为解决高凝高蜡油井蜡沉积问题,提出了一种新型的声空化和磁耦合竖井蜡控制技术。进行了实验研究和现场测试。这种蜡控制技术可以达到降低凝固点,通过乳化降低粘度以及通过空化,声振动和磁增强的综合作用来控制蜡的目的。实验室实验表明,经过空化和磁耦合处理后,高凝油在30°C下的降粘率超过25.5%;凝固点从32°C降低到27°C,降低了15.6%油样品的蜡晶体结构从粗,浓,致密变为细,稀,稀。现场测试表明,声空化和磁耦合蜡控制装置可以显着延长井的蜡沉积周期超过30天,并减少蜡的厚度(Yumen油田)。使用该技术,冲洗时间延长了两倍以上,最大达到了九倍,并且正常生产时间也得到了延长(新疆准东油田)。研究结果对于高凝点高蜡油井新竖井蜡控制技术的推广应用具有重要意义。

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