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STP1567
Nanofluids

Prabhu K.
Pages: 197
Published: 2012

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Eleven peer-reviewed papers focus on the properties of nanofluid technology including: heat transfer/thermal transport, composition, applications, preparation, and characterization. Nanofluids have extensive applications as coolants in the electronic, nuclear, and heat treatment industry. They also enhance the lubricating properties of oils and reduce emissions in automobiles.

Papers cover:
• Optimum CNT concentration and bath temperature for maximum heat transfer rate during quenching in CNT nanofluids
• Copper oxide nanofluid with water in electronic cooling
• Nanofluid boiling, flow visualization, critical heat flux enhancement and transient characteristics
• Surfactant coated Ce-Zr nanoparticles/nanofuel and reduction of emission in a diesel engine using nanofuel
• Addition of aluminum nanoparticles on cooling performance and quench severity of water during immersion quenching
• And much more

Table of Contents

Optimum CNT Concentration and Bath Temperature for Maximum Heat Transfer Rate during Quenching in CNT Nanofluids
Babu K., Prasanna Kumar T.

Comparison of the Performance of Copper Oxide Nanofluid with Water in Electronic Cooling
Das K., Namburu P., Vajjha S.

Flow Visualization, Critical Heat Flux Enhancement, and Transient Characteristics in Pool Boiling Using Nanofluids
Hegde R., Rao S., Reddy R.

Preparation and Characterization of Surfactant Coated Ce-Zr Nanoparticles and Nanofuel
Kanagaraj S., Sharma R.

Reduction of Emission in a Diesel Engine Using Nanofuel – Ceria Nanoparticle Dispersed Diesel
Kanagaraj S., Mandal S.

Boundary-Layer Flow of a Nanofluid past a Stretching Sheet under Uniform Heat and Mass Flux
Khan W., Pop I.

Thermal Conductivity and Rheological Behaviour of Al-alloy Dispersed Ethylene Glycol Based Nanofluids
Das P., Manna I., Paul G., Philip J., Raj B.

Effect of Addition of Aluminum Nanoparticles on Cooling Performance and Quench Severity of Water during Immersion Quenching
Prabhu K., Ramesh G.

Synthesis of Copper Nanofluids Using Ascorbic Acid Reduction Method Via One Step Solution Phase Approach
Shenoy S., Shetty A.

Use of Ultrasound Thermometry to Study Natural Convection in Opaque Nanofluids
Bon B., Wong K.

Nucleate Pool Boiling Heat Transfer Correlation for TiO2-Water Nanofluids
Dalkilic A., Suriyawong A., Wongwises S.

Committee: D02
Paper ID: STP1567-EB
DOI: 10.1520/STP1567-EB
ISBN-EB: 978-0-8031-7560-0

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978-0-8031-7555-6
STP1567-EB