The Development and Performance of a Gemini Viscoelastic Surfactant with Tricationic Groups Applied in Unconventional Oil and Gas Reservoir Stimulation

Author:

Zhang Wenlong12ORCID,Mao Jincheng3,Yang Yun4,Chai Huiqiang5,Shuang Zhiqiang6,Wang Lan12,Yang Xiaojiang3,Wang Longyao12

Affiliation:

1. School of Petrochemical Engineering Changzhou University No. 21 Gehu Middle Road, Wujin District Changzhou City Jiangsu Province China

2. Jiangsu Province Key Laboratory of Fine Petrochemical Engineering Changzhou University No. 21 Gehu Middle Road, Wujin District Changzhou City Jiangsu Province China

3. State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation Southwest Petroleum University No. 8 Xindu Road, Xindu District Chengdu Sichuan Province China

4. First Oil production Plant PetroChina Changqing Oilfield Company, CNPC Hezhuangping Town, Baota District Yan'an City Shaanxi Province China

5. Shale oil development company PetroChina Changqing Oilfield Company CNPC Qingcheng Base, Qingcheng County Qingyang City Gansu Province China

6. Hade Oil and Gas Production Management Area PetroChina Tarim Oilfield Company CNPC Shihua Avenue Korla City Xinjiang China

Abstract

AbstractTo improve water solubility and salt tolerance of viscoelstic surfactants (VESs), modifying the spacer of Gemini VES was adopted and a novel Gemini VES nominated TC2OH, with tri‐cationic groups and double hydroxyls on the spacer, was developed. The basic surface activity properties of TC2OH and the molecular aggregate behavior stimulated by NaCl or NaSal were measured and analyzed to investigate the mechanism of viscoelastic fluid forming by TC2OH solution, and it proved that TC2OH is more sensitive to NaSal, compared with NaCl, due to the embedded structure of salicylate. The molecular structure of TC2OH imparts excellent solubility to itself, and with the assistance of ethanol, the dissolution time in water can be shortened to within 45 seconds. In addition, oscillation experiments, heat and shear resistant experiments, and drag reduction tests were conducted to study the advantage of NaSal for stimulating the formation of the slickwater compared with NaCl. The slickwater stimulated by NaSal indeed exhibit superior drag reduction and proppant carrying capacity. To effectively disassemble the wormlike micelles for gel breaking, ethylene glycol butyl ether performs better than the hydrocarbons because of its high polarity and water solubility. The gel breaking fluids of slickwater caused extremely low damage to the tight sandstone cores. The successful development of TC2OH enables instant preparation of slickwater and variable‐viscosity for fracturing in unconventional reservoirs, which also realizes convenient switching between the slickwater with different viscosity.

Funder

Natural Science Foundation of Chongqing Municipality

Publisher

Wiley

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