College of Science, Heilongjiang Bayi Agricultural University, Daqing, 163319, China.
School of Petroleum Engineering, China University of Petroleum (East China), Qingdao, 266580, Shandong, China.
Environ Sci Pollut Res Int. 2023 Apr;30(19):55034-55043. doi: 10.1007/s11356-023-26279-9. Epub 2023 Mar 8.
The research objective of this investigation is to explore the influence of filtrate reducer and reservoir characteristics on the filtration reduction of drilling fluid during the drilling process, and the filtration reduction mechanism of drilling fluids is also revealed. The results obtained that a synthetic filtrate reducer can significantly reduce the filtration coefficient than that of the commercial filtrate reducer. Moreover, the filtration coefficient of drilling fluid constructed from synthetic filtrate reducer is reduced from 4.9 × 10 m·min to 2.4 × 10 m·min with an increase in the filtrate reducer content, which is much lower than that of the commercial filtrate reducer. The weaker filtration capacity of the drilling fluid containing the modified filtrate reducer is attributed to the combined action of the filtrate reducer containing multifunctional groups adsorbed on the sand surface and the hydration membrane adsorbed on the sand surface. Furthermore, the increase in reservoir temperature and shear rate increases the filtration coefficient of drilling fluid, indicating that low temperature and shear rate are conducive to improve the filtration capacity. Thus, the type and content of filtrate reducer are preferred during drilling in oilfield reservoir, but increasing reservoir temperature and shear rate are not recommended. It is necessary to confect the drilling mud with appropriate filtrate reducer such as the chemicals prepared herein during drilling operation.
本研究的目的是探讨滤液降失剂和储层特性对钻井液在钻井过程中降滤失性能的影响,并揭示钻井液的降滤失机理。结果表明,合成滤液降失剂比商业滤液降失剂能显著降低滤失系数。此外,随着滤液降失剂含量的增加,由合成滤液降失剂构建的钻井液的滤失系数从 4.9×10-5m·min-1降低至 2.4×10-5m·min-1,远低于商业滤液降失剂。含改性滤液降失剂的钻井液具有较弱的滤失能力,这归因于吸附在砂表面的多功能基团的滤液降失剂和吸附在砂表面的水化膜的共同作用。此外,储层温度和剪切速率的增加会增加钻井液的滤失系数,表明低温和低剪切速率有利于提高滤失性能。因此,在油田储层钻井过程中,优选滤液降失剂的类型和含量,而增加储层温度和剪切速率则不推荐。在钻井作业过程中,需要配制具有适当滤液降失剂的钻井泥浆,如本文制备的化学品。