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Convective Heat Transfer Coefficient Of Nanofluids

Autor Vishal Nandigana, Navodhayan Selvaraju, Karthik Mahadevan
en Limba Engleză Paperback – 21 mai 2012
The thermal performance namely heat transfer charactersistics of different types of nanofluids inside a uniformly heated tube is numerically investigated. A realistic two-component model for transport phenomena in nanofluids was developed by considering nanoparticle absolute velocity as the sum of the base fluid velocity and a relative (slip) velocity. These numerical results were validated by comparing them with the experiments performed under the same flow conditions. The effect of mass flow rate, heat flux, inlet temperature, particle size, concentration on the convective heat transfer coefficient is elaborately discussed. A new correlation has been proposed for determining the local Nusselt number as a function of Re, Pr and (D/X) based on the experiments carried out for the laminar regime under constant heat flux condition for very low particle concentration. The correlations developed will hopefully provide a better understanding on the local variation of the convective heat transfer of such novel fluids.
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Specificații

ISBN-13: 9783659115363
ISBN-10: 3659115363
Pagini: 108
Dimensiuni: 152 x 229 x 7 mm
Greutate: 0.17 kg
Editura: LAP LAMBERT ACADEMIC PUBLISHING AG & CO KG
Colecția LAP Lambert Academic Publishing

Notă biografică

Vishal Nandigana is currently a PhD student in Mechanical Engineering at UIUC, Illinois. His research interest includes, developing multi-scale, multi-domain computational models to understand the transport phenomena in micro/nanochannel devices.Navodhayan Selvaraju; PGD (Thermal Power Plant) is currently a Junior manager in GMR Energy Ltd, INDIA.