Title of article
Numerical assessment of ceramic micro heat exchangers working with nanofluids by Taguchi optimization approach
Author/Authors
Naderi ، Mohsen Department of Mechanical Engineering - University of Mohaghegh Ardabili , Vajdi ، Mohammad Department of Mechanical Engineering - University of Mohaghegh Ardabili , Sadegh Moghanlou ، Farhad Department of Mechanical Engineering - University of Mohaghegh Ardabili , Nami ، Hossein Department of Green Technology - University of Southern Denmark
From page
166
To page
178
Abstract
The rapid advancements in microsystems technology have necessitated the exploration of innovative materials for efficient thermal management in micro heat exchangers. This research delves into the performance evaluation of three advanced ceramics: ZrB2, BeO, and Si3N4 as alternative micro heat exchanger fabrication materials. The study systematically assessed the ceramics apos; interaction with Al2O3-nanofluids across diverse volume percentages and mass flow rates using the Taguchi optimization method. Beryllium oxide emerged as the superior material, registering warm outlet temperatures as low as 64.86 °C and cold outlet peaks at 31.68 °C. Sensitivity analyses further underscored the critical role of inlet temperature on outlet dynamics, with warm and cold outlets showing significances of ~72% and ~99%, respectively. Additionally, the research pinpointed 0.75 vol% as the optimal Al2O3-nanofluid content, yielding the most favorable performance metrics across the ceramics.
Keywords
Micro heat exchanger , Taguchi method , Optimization , Advanced ceramics , Numerical method
Journal title
Synthesis and Sintering
Journal title
Synthesis and Sintering
Record number
2772746
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