Study of Influences of Fracture Additives on Stability of Crude Oil Emulsion

H. Fang, Mingxia Wang, Xiaoyun Liu, W. Jin, X. Ma, X. Meng, Feng Yan
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Abstract

A hydraulic fracture is a key technology to increase production of the low permeability oil fields. Fracture additives such as gels, friction reducers, pH adjusters and clay stabilizers were injected into the underground. While more than 50% of the fracture fluid remains underground. The residue of fracture fluid comes out with the produced liquid (a mixture of crude oil and water) in the subsequent oil recovery process, which results in a highly stable crude oil-water emulsion. The stability and stable mechanism of the emulsion with fracture fluid have been experimentally investigated. The influences of fracture additives and components of crude oil on the stability of emulsion were investigated by bottle test and microscopic examination. The interfacial tension and modulus of dilation were explored by a spinning drop interfacial tension meter and an interface expansion rheometer, respectively. The fracture additives played the key role on the emulsion stability. On one hand, the interface energy of oil-water was reduced by friction reducer (IFT was decreased from 24.0 mN/m to 1.9 mN/m), which was a favor for the formation of an emulsion. On the other hand, the dilational modulus of crude oil-water film was increased by hydroxypropyl guar and pH adjuster (Na2CO3) to form a viscoelastic film, which resulted in a highly stable emulsion. The residual fracture fluid accompanied by produced liquid resulted in a highly stable emulsion. The emulsion with fracture additives was difficult to be broken, which may affect the normal production of the oil field. A positive strategy such as developing demulsifier with high efficient should be put onto the schedule.
裂缝添加剂对原油乳化液稳定性影响的研究
水力压裂是低渗透油田增产的关键技术。压裂添加剂,如凝胶、减摩剂、pH调节剂和粘土稳定剂被注入地下。而超过50%的压裂液仍在地下。在随后的采油过程中,压裂液的残留物与采出液(原油和水的混合物)一起排出,形成高度稳定的原油-水乳状液。实验研究了含压裂液乳化液的稳定性及其稳定机理。通过瓶试和显微检查,研究了裂缝添加剂和原油组分对乳化液稳定性的影响。用自旋滴界面张力仪和界面膨胀流变仪分别对界面张力和膨胀模量进行了研究。裂缝添加剂对乳状液的稳定性起着关键作用。一方面,减摩剂降低了油水界面能(IFT由24.0 mN/m降至1.9 mN/m),有利于乳化液的形成;另一方面,羟丙基瓜尔胶和pH调节剂Na2CO3可提高原油-水膜的膨胀模量,形成粘弹性膜,形成高度稳定的乳液。剩余压裂液与产出液混合形成高度稳定的乳状液。含裂缝添加剂的乳化液不易破碎,可能影响油田的正常生产。开发高效破乳剂等积极对策应提上日程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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