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The formation and viscoelasticity of pore-throat scale emulsion in porous media

机译:多孔介质中孔喉尺度乳液的形成与粘弹性

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The emulsion process in reservoirs was simulated by core displacement experiment, and the formation mechanisms of emulsion were studied by visualization core displacement experiment. The particle size distribution of formed emulsion at different transport distances, emulsifier concentrations or injection rates was measured, and the condition of forming stable emulsion of pore-throat scale were analyzed. By measuring the viscosity, the storage modulus and the loss modulus of the formed emulsion, viscoelasticity of emulsion was studied. The study shows that the formation mechanisms are mainly the snapping action of residual oil and the shearing action of emulsifier solution. When the migration distance is greater than 1/3 times the injector-producer spacing, the emulsifier concentration is between 0.4% and 0.5% and the injection rate is between 0.3 mL/min and 0.4 mL/min, the pore-throat scale emulsion with favorably stability can be formed. The viscosity is between 48.6 mP·s and 70.3 mP·s when the shear rate is 7.34 s?1 and the emulsifier concentration is between 0.4% and 0.5%. The storage modulus and loss modulus of emulsion increase with the emulsifier concentration increasing, and the viscoelasticity of emulsion is more favorably.
机译:通过岩心驱替实验模拟了储层的乳化过程,并通过可视化岩心驱替实验研究了乳状液的形成机理。测量了不同输送距离,乳化剂浓度或注入速率下形成的乳液的粒径分布,并分析了形成孔喉尺度稳定乳液的条件。通过测量形成的乳液的粘度,储能模量和损耗模量,研究了乳液的粘弹性。研究表明,其形成机理主要是渣油的吸附作用和乳化剂溶液的剪切作用。当迁移距离大于进样器间距的1/3倍时,乳化剂的浓度在0.4%至0.5%之间,注入速率在0.3 mL / min至0.4 mL / min之间,有利地,可以形成稳定性。当剪切速率为7.34s?1且乳化剂浓度为0.4%至0.5%时,粘度为48.6mP·s至70.3mP·s。乳化剂的储能模量和损耗模量随着乳化剂浓度的增加而增加,并且乳剂的粘弹性更有利。

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