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Investigation of nanofluid transport in a corrugated channel under pulsating effect

2021
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Advisor: Prof. Dr. Beşir Şahin

Abstract (EN)

The present research numerically illustrated the effect of pulsating turbulent flow and single-walled carbon nanotubes/water, SWCNT-H2O nanofluid in a corrugated channel on hydrothermal characteristics and entropy production. Two various models for describing the flow of nanoparticles in a base fluid are applied. These models are homogeneous single-phase, SPM and Lagrangian-Eulerian model (or discrete phase model), DPM. This simulation covers the Reynolds number, pulsation frequency, phase shift, and nanoparticles concentration in the range of (for steady flow: 4000 ≤ Re ≤10000 and for pulsating flow:4000 ≤ Re ≤7000), (1 ≤ f≤ 5), (0o ≤ θ ≤180o) and (0% ≤ φ ≤ 3%), respectively. CFD simulations show that the pulsation frequency, f, and phase shift, θ have a significant role in improving the heat transfer ratio and controlling the entropy generation through the wavy channel. Finally, it is recommended to use SWCNT/water nanofluid with a high volume fraction (φ=3%) as a working fluid in the considered channel due to its high heat transfer ratio and low thermal irreversibility.

Author

Dr. Hudhaıfa Raad Hamzah Hamzah

How to Cite

Hudhaıfa Raad Hamzah Hamzah (Doctorate thesis). Investigation of nanofluid transport in a corrugated channel under pulsating effect, 2021, Çukurova University.

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