An Experimental Investigation into the Role of an In Situ Microemulsion for Enhancing Oil Recovery in Tight Formations

Author:

Zeng Meiting1,Zang Chuanzhen12,Li Jie1,Mou Xiangyu2,Wang Rui1,Li Haifu1,Li Junjian2

Affiliation:

1. Engineering Technology Research Institute, Xinjiang Oilfield Company, No. 87, Shengli Road, Karamay 834000, China

2. State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum (Beijing), Beijing 102249, China

Abstract

Surfactant huff-n-puff (HnP) has been shown to be an effective protocol to improve oil recovery in tight and ultratight reservoirs. The success of surfactant HnP for enhanced oil recovery (EOR) process depends on the efficiency of the designed chemical formula, as the formation of an in situ microemulsion by surfactant injection is considered to be the most desirable condition for achieving an ultra-low interfacial tension during the HnP process. In this work, we conducted experimental studies on the mechanism of in situ microemulsion EOR in the Mahu tight oil reservoir. Salinity scan experiments were carried out to compare different surfactants with crude oil from the Mahu reservoir, starting with the assessment of surfactant micellar solutions for their ability to form microemulsions with Mahu crude oil and examining the interfacial characteristics. Subsequently, detailed micromodels representing millimeter-scale fractures, micron-scale pores, and nano-scale channels were utilized to study the imbibition and flowback of various surfactant micellar solutions. Observations of the in situ microemulsion system revealed the mechanisms behind the enhanced oil recovery, which was the emulsification’s near-miscibility effect leading to microemulsion formation and its performance under low-interfacial-tension conditions. During the injection process, notable improvements in the micro-scale pore throat heterogeneity were observed, which improved the pore fluid mobility. The flowback phase improved the channeling between the different media, promoting a uniform movement of the oil–water interface and aiding in the recovery of a significant amount of the oil phase permeability.

Publisher

MDPI AG

Reference25 articles.

1. Lessons learned from oil production of tight oil reservoirs in Bakken play;Dou;J. Oil Drill. Prod. Technol.,2012

2. Capuano, L. (2019). Annual Energy Outlook 2019, US Energy Information Administration.

3. Assessment of the potential of tight oil and gas in major basins in China;Zheng;J. China Min. Mag.,2017

4. Practices of Zipper Fracturing for Tight Reservoir Development with Small Well Spacing;Wan;Xinjiang Oil Gas,2022

5. Feasibility Analysis of Water Flooding with Multi-fractured Horizontal Wells in Ultra-low Permeability Reservoirs;Wang;J. Geosci.,2016

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