This study explores the convective heat transfer performance of CNT/MXene hybrid nanofluids related with conventional water in thermally controlled microchannels. To address these limits, the study includes hybrid nanofluids, vortex generators, pulsating flows, disposed V-shaped baffles, and biomimetic cooling architec...
Rolvin D'Silva, S. Deshmukh, Dadapeer Doddamani et al.· Discover Mechanical Engineer...· 0 citations
The enhancement of heat transfer device performance through the use of wire coil inserts and hybrid nanofluids can significantly improve convective heat transfer, though it also results in higher pumping power requirements. Therefore, a comprehensive investigation considering both heat transfer improvement and the effe...
A. I. Ramadhan, W. H. Azmi, I. Zakaria et al.· Scientific Experiences in Me...· 0 citations
The ever-increasing heat dissipation requirements of modern high-performance electronics critically demand advanced cooling techniques beyond conventional fluids. Nanofluids have emerged as a next-generation solution for enhanced boiling heat transfer. This study experimentally investigates the pool boiling performance...
Rahma Sh. Kadhim, Ekhlas M. Fayyadh, Qahtan A. Al-Nakeeb· Jurnal Engineering· 0 citations
This study presents a systematic experimental investigation of the thermal performance of a flat-plate solar water heating (SWH) system employing Al₂O₃/water nanofluid as the working fluid across three nanoparticle mass concentrations (1, 2, and 3 wt%) and four mass flow rates (5, 10, 15, and 20 kg/h) under real outdoo...
O. Alabi, Oluwatoyin Joseph Gbadeyan, O. Olanrewaju· Discover Energy· 0 citations
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