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Experimental investigation on rheological property of foamy oil in Venezuela

机译:委内瑞拉泡沫油流变性能实验研究

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Some heavy oil reservoirs present foamy oil flow behavior under primary production, and the foamy oil viscosity and rheological property are important factors that influence the efficiency of the process. The variation of the foamy oil viscosity during the depletion process is complicated due to the generation and migration of dispersed gas bubbles within the oil phase, and still remains as a controversial topic.This study aims to investigate this issue by measuring the foamy oil viscosity at different pressure, temperature and flow rate with a capillary viscometer system equipped with a specially designed foamy oil generator to guarantee the generation and stable flow of gas-in-oil dispersions. Meanwhile, the dead oil and live oil viscosities were also measured for comparison.Based on the results from all the tests the following conclusions can be drawn. Below the bubble point pressure, the dispersed gas-bubble volume fraction and foamy oil viscosity increase with pressure decline; the viscosity of foamy oil is higher than that of live oil, and the gap between them widens with pressure decline. Moreover, foamy oil behaves as shear-thinning power-law fluid, and the shear-thinning effect becomes stronger with the decrease of pressure. The foamy oil rheology is also affected by temperature, and the shear-thinning effect becomes milder with the increase of temperature. Based on the experimental data, a formula was established for estimating foamy oil apparent viscosity within porous media, which took flow rate, shear-thinning flow parameters, permeability, porosity and other factors into consideration.
机译:一些重油储层在初级生产下存在泡沫油流动性,泡沫油粘度和流变性是影响过程效率的重要因素。由于油相中分散气泡的产生和迁移,耗尽过程中泡沫油粘度的变化是复杂的,并且仍然仍然是一个有争议的主题。本研究旨在通过测量泡沫油粘度来研究这个问题用毛细管粘度计系统配备有专门设计的泡沫油发生器的不同压力,温度和流速,以保证燃气油分散体的产生和稳定流动。同时,还测量了死油和生物粘度以进行比较。基于所有测试的结果,可以得出以下结论。低于气泡点压力,分散气泡体积分数和泡沫油粘度随压力下降而增加;泡沫油的粘度高于活油的粘度,并且它们之间的间隙随压力下降而变宽。此外,泡沫油的表现为剪切稀释的功率法,并且剪切稀释效果随着压力的降低而变得更强。泡沫油流变学也受到温度的影响,并且剪切稀释效果随温度的增加而变温。基于实验数据,建立了一种用于估算多孔介质内的泡沫状油性粘度的公式,其采用流速,剪切稀释流量参数,渗透性,孔隙度和其他因素。

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