Research Article

Scrutiny of flow and heat transfer characteristics of hybrid nanofluid passing through a squeezing channel

Volume: 42 Number: 6 December 9, 2024

Scrutiny of flow and heat transfer characteristics of hybrid nanofluid passing through a squeezing channel

Abstract

This article mainly presents a comparative analysis of MHD flow of three different types of fluids, namely, simple base fluid (Ethylene Glycol), mono-nanofluid (Ethylene Glycol+Graphene) and Hybrid nanofluid (Ethylene Glycol+Graphene+Copper) passing through a squeezing channel. The effect of heat absorption and Joule dissipation is also taken into account. System of partial differential equation governing the flow problem is transformed into a system of ordinary differential equation by using similarity transforms. To get the solution, shooting technique along with Runge-Kutta 4th order method is employed. The influence of several physical parameter on velocity, temperature, skin friction and Nusselt number is analyzed. The findings indicate that temperature increases with the enhancement of a magnetic field and Joule dissipation. Moreover, the study reveals that the temperature of mono-nanofluid is higher than that of the base fluid but lower than that of the hybrid nanofluid.

Keywords

References

  1. REFERENCES
  2. [1] Choi SUS, Eastman JA. Enhancing thermal conductivity of fluids with nanoparticles. Development and applications of non-Newtonian flows. Argonne National Lab (ANL), Argonne, IL (United States); 1995.
  3. [2] Buongiorno J. Convective transport in nanofluids. ASME J Heat Transf 2006;128:240–250. [CrossRef]
  4. [3] Izadi M, Ghalambaz M, Mehryan SAM. Location impact of a pair of magnetic sources on melting of a magneto-ferro phase change substance. Chin J Phys 2020;65:377–388. [CrossRef]
  5. [4] Hajjar A, Mehryan SAM, Ghalambaz M. Time periodic natural convection heat transfer in a nano-encapsulated phase-change suspension. Int J Mech Sci 2020;166:105243. [CrossRef]
  6. [5] Alsabery AI, Hashim I, Hajjar A, Ghalambaz M, Nadeem S, Pour MS. Entropy generation and natural convection flow of hybrid nanofluids in a partially divided wavy cavity including solid blocks. Energies 2020;13:2942. [CrossRef]
  7. [6] Mishra MK, Seth GS, Sharma R. Scrutiny of heat transfer and nanoparticle migration within a channel filled with nanofluid. Heat Transf 2020;49:2770–2788. [CrossRef]
  8. [7] Mishra MK, Seth GS, Sharma R. Navier's slip effect on mixed convection flow of non-Newtonian nanofluid: Buongiorno's model with passive control approach. Int J Comput Appl Math 2019;5:1–23. [CrossRef]

Details

Primary Language

English

Subjects

Clinical Chemistry

Journal Section

Research Article

Publication Date

December 9, 2024

Submission Date

August 26, 2023

Acceptance Date

December 29, 2023

Published in Issue

Year 2024 Volume: 42 Number: 6

APA
Sharma, R., Aruna, D., Mıshra, M. K., & Sinha, S. B. (2024). Scrutiny of flow and heat transfer characteristics of hybrid nanofluid passing through a squeezing channel. Sigma Journal of Engineering and Natural Sciences, 42(6), 1856-1865. https://izlik.org/JA55TN33HZ
AMA
1.Sharma R, Aruna D, Mıshra MK, Sinha SB. Scrutiny of flow and heat transfer characteristics of hybrid nanofluid passing through a squeezing channel. SIGMA. 2024;42(6):1856-1865. https://izlik.org/JA55TN33HZ
Chicago
Sharma, Rohit, Darapaneni Aruna, Manoj Kumar Mıshra, and Sneh Bala Sinha. 2024. “Scrutiny of Flow and Heat Transfer Characteristics of Hybrid Nanofluid Passing through a Squeezing Channel”. Sigma Journal of Engineering and Natural Sciences 42 (6): 1856-65. https://izlik.org/JA55TN33HZ.
EndNote
Sharma R, Aruna D, Mıshra MK, Sinha SB (December 1, 2024) Scrutiny of flow and heat transfer characteristics of hybrid nanofluid passing through a squeezing channel. Sigma Journal of Engineering and Natural Sciences 42 6 1856–1865.
IEEE
[1]R. Sharma, D. Aruna, M. K. Mıshra, and S. B. Sinha, “Scrutiny of flow and heat transfer characteristics of hybrid nanofluid passing through a squeezing channel”, SIGMA, vol. 42, no. 6, pp. 1856–1865, Dec. 2024, [Online]. Available: https://izlik.org/JA55TN33HZ
ISNAD
Sharma, Rohit - Aruna, Darapaneni - Mıshra, Manoj Kumar - Sinha, Sneh Bala. “Scrutiny of Flow and Heat Transfer Characteristics of Hybrid Nanofluid Passing through a Squeezing Channel”. Sigma Journal of Engineering and Natural Sciences 42/6 (December 1, 2024): 1856-1865. https://izlik.org/JA55TN33HZ.
JAMA
1.Sharma R, Aruna D, Mıshra MK, Sinha SB. Scrutiny of flow and heat transfer characteristics of hybrid nanofluid passing through a squeezing channel. SIGMA. 2024;42:1856–1865.
MLA
Sharma, Rohit, et al. “Scrutiny of Flow and Heat Transfer Characteristics of Hybrid Nanofluid Passing through a Squeezing Channel”. Sigma Journal of Engineering and Natural Sciences, vol. 42, no. 6, Dec. 2024, pp. 1856-65, https://izlik.org/JA55TN33HZ.
Vancouver
1.Rohit Sharma, Darapaneni Aruna, Manoj Kumar Mıshra, Sneh Bala Sinha. Scrutiny of flow and heat transfer characteristics of hybrid nanofluid passing through a squeezing channel. SIGMA [Internet]. 2024 Dec. 1;42(6):1856-65. Available from: https://izlik.org/JA55TN33HZ

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