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A role of ultrasonic frequency and power on oil mobilization in underground petroleum reservoirs

机译:超声频率和功率对地下石油储层动油的作用

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In oil industry, the reduction of oil production is of major concern as world’s necessity for oil increases. Therefore, developing and applying new techniques to mobilize residual oil left in the reservoir is important. Ultrasound technique is one of the unconventional methods to increase the productivity of oil wells, but in spite of many laboratory experiments on oil mobilization under ultrasound in porous media the precise mechanisms are weakly understood. Therefore, it is vital to perform basic experiments to achieve a good knowledge and deep insight into the mechanisms. To recognize the reason why ultrasound is able to mobilize residual oil left in pores, one must remember why oil droplet is trapped. Residual oil is left in pores because of insisting capillary forces. So, in this paper a mechanism related to capillary forces are developed to clarify the effect of ultrasound on mobilization of residual oil in porous media. In addition, some experiments are conducted with a 2D glass micro-model in which the mobilization of oil is observed using a digital microscope and camera. It was concluded from the result of experiments that the oil mobilization was proportional to ultrasound power and frequency.
机译:在石油工业中,随着世界对石油需求的增加,石油产量的下降是主要问题。因此,开发和应用新技术来动员残留在油层中的剩余油很重要。超声技术是提高油井生产率的非常规方法之一,但是尽管在多孔介质中超声下动员石油的许多实验室实验中,对精确的机理仍知之甚少。因此,至关重要的是进行基础实验,以获得对机理的深入了解和深刻理解。要认识到超声波能够移动残留在孔中的残留油的原因,必须记住为什么油滴会被捕获。由于持续的毛细作用力,残留的油留在毛孔中。因此,在本文中,开发了一种与毛细作用力有关的机制,以阐明超声对多孔介质中残余油的动员的影响。此外,还使用2D玻璃微模型进行了一些实验,其中使用数字显微镜和照相机观察了油的运动。从实验结果可以得出结论,油的流动性与超声功率和频率成正比。

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