TY - JOUR
T1 - A comprehensive review on nanofluids
T2 - Synthesis, cutting-edge applications, and future prospects
AU - Bacha, Habib Ben
AU - Ullah, Naeem
AU - Hamid, Aamir
AU - Shah, Nehad Ali
N1 - Publisher Copyright:
© 2024
PY - 2024/5
Y1 - 2024/5
N2 - Nanofluids, which are fluid suspensions containing nanoparticles, exhibit remarkable property enhancements even at low nanoparticle concentrations. Much of the research on nanofluids aims to understand their behavior for applications where heat transfer enhancement is crucial, spanning industrial, nuclear, transportation, electronics, biomedical, and food sectors. Notably, nanofluids can act as smart fluids, allowing the controlled modulation of heat transfer. This paper presents an overview of recent advances in nanofluid research, covering preparation techniques and a wide range of existing and potential applications in energy, mechanical engineering, and biomedicine. Furthermore, the paper highlights avenues for future research in this field. In light of the findings, this paper concludes that a comprehensive hybrid model for understanding nanofluid thermophysical properties is lacking. Further exploration of heat transfer in nanofluids and additional research on unexplored aspects, particularly the applications of nanoparticles, are deemed essential. To capture the entirety of our study, the graphical abstract provides a comprehensive representation.
AB - Nanofluids, which are fluid suspensions containing nanoparticles, exhibit remarkable property enhancements even at low nanoparticle concentrations. Much of the research on nanofluids aims to understand their behavior for applications where heat transfer enhancement is crucial, spanning industrial, nuclear, transportation, electronics, biomedical, and food sectors. Notably, nanofluids can act as smart fluids, allowing the controlled modulation of heat transfer. This paper presents an overview of recent advances in nanofluid research, covering preparation techniques and a wide range of existing and potential applications in energy, mechanical engineering, and biomedicine. Furthermore, the paper highlights avenues for future research in this field. In light of the findings, this paper concludes that a comprehensive hybrid model for understanding nanofluid thermophysical properties is lacking. Further exploration of heat transfer in nanofluids and additional research on unexplored aspects, particularly the applications of nanoparticles, are deemed essential. To capture the entirety of our study, the graphical abstract provides a comprehensive representation.
KW - Applications and challenges
KW - Future prospects
KW - Nanofluids
KW - Preparation
KW - Thermophysical properties
UR - http://www.scopus.com/inward/record.url?scp=85184810664&partnerID=8YFLogxK
U2 - 10.1016/j.ijft.2024.100595
DO - 10.1016/j.ijft.2024.100595
M3 - Review article
AN - SCOPUS:85184810664
SN - 2666-2027
VL - 22
JO - International Journal of Thermofluids
JF - International Journal of Thermofluids
M1 - 100595
ER -