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- W2657482007 abstract "Preparation of oil well products with a high water content is complicated by many factors, among which significant place had a limitation of performance of electric dehydrators. The design of such systems did not undergo significant changes over the past 40 years. A promising way of increasing dehydratation performance is the usage a structure of electric dehydrators that implement the principle of processing of oil-water emulsions in an inhomogeneous electric field, because in this case increases the magnitude of the impact dielectrophoretic forces on globules of water. The development of such devices is only possible after a detailed analysis of the distribution of non-uniform electric field throughout the volume of the device, as well as analysis of dynamics of water droplets in the field of buoyancy forces, the dielectrophoretic forces and drag forces. In this study the algorithm for the calculation of non-uniform electric field, generated by symmetric and asymmetric configuration of the electrodes, is developed. The results of the calculation of the electric field were used to simulate the movement of water droplets in oil-water emulsion under the action of dielectrophoresis force, buoyancy force and drag forces, for the different configurations of the electrodes. Based on water drops trajectory analysis, the particularities of the separation in dehydrators with different sizes of the charged and grounded plates of the capacitor was described. It is established that the asymmetric configuration of the electrodes with a predominance of the length of a charged plate had the best, compared with other configurations, performance, and can be used for intensification of water-in-oil emulsion electrocoalescence." @default.
- W2657482007 created "2017-06-30" @default.
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- W2657482007 date "2015-08-01" @default.
- W2657482007 modified "2023-09-27" @default.
- W2657482007 title "MATHEMATICAL MODELING OF NONUNIFORM ELECTRIC FIELD INFLUENCE FOR WATER DROPLETS MOTION IN OIL" @default.
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- W2657482007 doi "https://doi.org/10.17122/ogbus-2015-4-95-117" @default.
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