Nanoparticles in Drilling Fluids: A Review of Types, Mechanisms, Applications, and Future Prospects

Наночастицы в буровых растворах: обзор типов, механизмов, применений и перспектив развития
Kegang Ling, Vasanth Gokapai, Prasad Pothana
2024-10-03

drilling fluidsfluid loss controlnanofluidsnanoparticleswellbore stability
Nanofluids have gained significant attention as a promising solution to several challenges in drilling operations. Nanoparticles, due to their exclusive properties such as high specific surface area, strong adsorption potential, and excellent thermal conductivity, offer significant potential to improve the efficiency and performance of drilling processes. Regardless of the advancements in drilling fluids and techniques that have improved borehole stability, hole cleaning, and extreme operational condition (HTHP) management, limitations still persist. This review discusses a detailed summary of existing research on the application of nanofluids in drilling, exploring their types, properties, and specific uses in areas such as fluid loss control, wellbore stability, and thermal management. It also reports the challenges and future potential of nanotechnology in drilling, including nanoparticle stability, environmental considerations, and cost concerns. By synthesizing current research and highlighting gaps for further study, this review intends to guide researchers and industry professionals in effectively integrating nanofluid usage to optimize drilling practices and support a more sustainable energy future.
1
Despite advances in conventional drilling fluids and techniques, persistent challenges in borehole stability, hole cleaning, and extreme-condition management remain.
2
Nanofluids are applied to fluid-loss control, wellbore stability, hole cleaning, and thermal management under high-temperature, high-pressure conditions.
3
Nanoparticle stability, environmental impacts, and costs are major barriers to broader nanofluid integration in drilling operations.
4
Nanoparticles can improve drilling-fluid performance through high specific surface area, strong adsorption, and excellent thermal conductivity.
5
The review identifies research gaps and future opportunities for using nanotechnology to optimize drilling practices and support more sustainable energy development.

nanofluids containing nanoparticles used in drilling operations

the types, properties, mechanisms, applications, performance benefits, and limitations of drilling nanofluids, including fluid-loss control, wellbore stability, thermal management, nanoparticle stability, environmental impacts, and cost

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2024-10-03
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Authors
Kegang Ling
Vasanth Gokapai
Prasad Pothana
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