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Simulation on performance of a demulsification and dewatering device with coupling double fields: Swirl centrifugal field and high-voltage electric field

机译:耦合双田的破乳和脱水装置性能模拟:旋流离心场和高压电场

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摘要

Demulsiflcation and dewatering of emulsion oil are common in petroleum and chemical industries. For waste lubricating oil, as a common W/O emulsion, with high water content and complex construction, the multi-field coupling or integration technology can satisfactorily accomplish oil and water separation which cannot be realized by using a single technological method. A coupling device integrated swirl centrifugal and high-voltage electric fields are proposed. Water-droplet coalescence in emulsified oil under the high-voltage electric field can enlarge the droplet size, and the swirl centrifugal field can rapidly and efficiently achieve water-droplet separated from emulsified oil. In this study, the performance of the coupling device was investigated by using numerical simulation and experimental methods. The numerical results were in agreement with the values obtained by experimental methods. And the numerical results show that the dewatering and deoiling rates of overflow and outflow orifices increased by 4.5% and 6.2%, respectively, when voltage amplitude 10 kV increases to 11 kV. Moreover, when inlet velocity increased from 8 m s(-1) to 12 m s(-1), the separation efficiency gradually decreased. In conclusion, the results demonstrate that the double-field coupling device has a greatly performance at 11 kV and 8 ms(-1).
机译:乳液油的破乳剂和脱水在石油和化学工业中是常见的。对于废物润滑油,作为常见的W / O乳液,具有高含水量和复杂结构,多场耦合或整合技术可以通过使用单一技术方法来令人满意地完成油和水分离。提出了一种耦合装置集成旋流离心和高压电场。高压电场下乳化油中的水滴聚集可以扩大液滴尺寸,旋流离心场可以快速有效地实现与乳化油分离的水滴。在这项研究中,通过使用数值模拟和实验方法研究了偶联装置的性能。数值结果与实验方法获得的值一致。数值结果表明,当电压10kV增加到11kV时,溢流和流出孔的脱水和流出孔的脱落率分别增加了4.5%和6.2%。此外,当入口速度从8M S(-1)增加到12m S(-1)时,分离效率逐渐减小。总之,结果表明,双场耦合装置具有11kV和8ms(-1)的大大性能。

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