Performance Analysis of Double Pipe
by Using Different Nanofluids
Bharat Naik, Merwyn Thomas, M. Sreedhar Babu, Anand K. Hosmani,
Omkar Alloli, Kshitij Dasurkar, and Mahalaxmi Alloli
Abstract The study represents an enhancement of heat transfer using different
nanofluids containing nanoparticles (Al 2 O 3 , SiO 2 , Fe 3 O 4 ) volume fraction (0.02 ≤
φ ≤ 0.05). Numerical simulations are conducted using computational fluid dynamics
(CFD) and the model is generated using SOLIDWORKS. The governing equations
are solved iteratively using a SIMPLE technique and discretized using a finite volume
approach. The results show that the heat transfer rate increases with the increase of
the flow rates, also it has been observed that the heat transfer rate increases with
increase of operating temperature and also by the concentration of nanoparticles.
Keywords Computational fluid dynamics · Heat transfer · Nanofluids · Double
pipe heat exchanger · ANSYS FLUENT · SOLIDWORKS
B. Naik (B) · M. Thomas · M. S. Babu · A. K. Hosmani · O. Alloli · K. Dasurkar · M. Alloli
Department of Mechanical Engineering, Jain College of Engineering, Belagavi, Karnataka
590014, India
e-mail: bharatnaik.bgm@gmail.com
M. Thomas
e-mail: merwynthomas24@gmail.com
M. S. Babu
e-mail: sreedhar@jainbgm.in
A. K. Hosmani
e-mail: anandhosmani@jainbgm.in
O. Alloli
e-mail: omkaralloli.1739@gmail.com
K. Dasurkar
e-mail: kdasurkar3@gmail.com
M. Alloli
e-mail: mahalaxmialloli98@gmail.com
© The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2021
A. K. Parwani et al. (eds.), Recent Advances in Mechanical Infrastructure,
Lecture Notes in Intelligent Transportation and Infrastructure,
https://doi.org/10.1007/978-981-33-4176-0_26
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