Wir verwenden Cookies und Analyse-Tools, um die Nutzerfreundlichkeit der Internet-Seite zu verbessern und für Marketingzwecke. Wenn Sie fortfahren, diese Seite zu verwenden, nehmen wir an, dass Sie damit einverstanden sind. Zur Datenschutzerklärung.
Enhanced Heat Transfer in Serpentine Microchannel with Nanofluids
Details
The thermal loads are increasing in a wide variety of applications like microelectronics, transportation, lighting, utilization of solar energy for power generation, etc. Micro-electro-mechanical systems (MEMS) technology and nanotechnology are also rapidly emerging as a new revolution in miniaturization. Heat exchangers play a very important role in energy conversion, transmission, and utilization. Hence, the management of high thermal loads in these systems offers challenges and the thermal conductivity of heat transfer uid has become vital. This implies that a detailed study is required in microchannels. In the present study, the pressure drop and laminar convective heat transfer characteristics of three different nanofluids of Al2O3 and CuO in microchannel heat sink with rectangular duct of serpentine shape are experimentally investigated and compared with numerical values. The optimization of the microchannel for enhanced heat transfer is done with varying the hydraulic diameter of the serpentine shaped microchannel to get the maximum pressure drop across the channel for improved thermal conductivity.
Autorentext
Prof Dr. Sivakumar is working as Professor & Principal of Christ College of Engineering and Technology, Puducherry, India. He has published more than 15 research papers in various International and National Journals. He has 18 years of teaching experience and 6 years of research experience. He received his Phd degree from Pondicherry Engineering.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786200530226
- Sprache Englisch
- Genre Maschinenbau
- Anzahl Seiten 72
- Größe H220mm x B150mm x T5mm
- Jahr 2020
- EAN 9786200530226
- Format Kartonierter Einband (Kt)
- ISBN 620053022X
- Veröffentlichung 10.01.2020
- Titel Enhanced Heat Transfer in Serpentine Microchannel with Nanofluids
- Autor Sivakumar Arumugam , Alagumurthi N. , Sentilvelan T.
- Untertitel Effect of earlier flow transition from Laminar to Turbulent flow in Microchannel
- Gewicht 125g
- Herausgeber LAP LAMBERT Academic Publishing