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Measurements of Nanofluids Properties and Heat Transfer Computation - VAJJHA, RAVIKANTH; DAS, DEBENDRA
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VAJJHA, RAVIKANTH; DAS, DEBENDRA:

Measurements of Nanofluids Properties and Heat Transfer Computation - Taschenbuch

2010, ISBN: 383837214X, Lieferbar binnen 4-6 Wochen Versandkosten:Versandkostenfrei innerhalb der BRD

ID: 9783838372143

Internationaler Buchtitel. In englischer Sprache. Verlag: LAP Lambert Acad. Publ. Paperback, 132 Seiten, L=219mm, B=152mm, H=13mm, Gew.=212gr, [GR: 16830 - HC/Maschinenbau/Fertigungstechnik], Kartoniert/Broschiert, Klappentext: Research during the past decade has shown that dispersions of nanoscale particles in conventional heat transfer fluids, called nanofluids, can enhance its thermal conductivity. The convective heat transfer coefficient of this engineered fluid is substantially higher than that of the base fluid. The nanofluid's superior heat transfer capability depends on its thermophysical properties. The authors of this treatise, from their experimental expertise, have presented useful correlations for the thermophysical properties, which are valuable for engineering applications using nanofluids. Performing three-dimensional numerical investigations, the authors have shown that the use of nanofluids in a radiator can reduce the size of the heat exchanger surface area and the required pumping power in comparison with the base fluid on the basis of equal heat transfer. Research during the past decade has shown that dispersions of nanoscale particles in conventional heat transfer fluids, called nanofluids, can enhance its thermal conductivity. The convective heat transfer coefficient of this engineered fluid is substantially higher than that of the base fluid. The nanofluid's superior heat transfer capability depends on its thermophysical properties. The authors of this treatise, from their experimental expertise, have presented useful correlations for the thermophysical properties, which are valuable for engineering applications using nanofluids. Performing three-dimensional numerical investigations, the authors have shown that the use of nanofluids in a radiator can reduce the size of the heat exchanger surface area and the required pumping power in comparison with the base fluid on the basis of equal heat transfer.

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ISBN: 9783838372143

Research during the past decade has shown that dispersions of nanoscale particles in conventional heat transfer fluids, called nanofluids, can enhance its thermal conductivity. The convective heat transfer coefficient of this engineered fluid is substantially higher than that of the base fluid. The nanofluid's superior heat transfer capability depends on its thermophysical properties. The authors of this treatise, from their experimental expertise, have presented useful correlations for the thermophysical properties, which are valuable for engineering applications using nanofluids. Performing three-dimensional numerical investigations, the authors have shown that the use of nanofluids in a radiator can reduce the size of the heat exchanger surface area and the required pumping power in comparison with the base fluid on the basis of equal heat transfer. Textbooks New Books ~~ Technology~~ Engineering (General) Measurements-of-Nanofluids-Properties-and-Heat-Transfer-Computation~~RAVIKANTH-VAJJHA AV Akademikerverlag GmbH & Co. KG. Research during the past decade has shown that dispersions of nanoscale particles in conventional heat transfer fluids, called nanofluids, can enhance its thermal conductivity. The convective heat transfer coefficient of this engineered fluid is substantially higher than that of the base fluid. The nanofluid's superior heat transfer capability depends on its thermophysical properties. The authors of this treatise, from their experimental expertise, have presented useful correlations for the thermophysical properties, which are valuable for engineering applications using nanofluids. Performing three-dimensional numerical investigations, the authors have shown that the use of nanofluids in a radiator can reduce the size of the heat exchanger surface area and the required pumping power in comparison with the base fluid on the basis of equal heat transfer.

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Measurements of Nanofluids Properties and Heat Transfer Computation - VAJJHA, RAVIKANTH / DAS, DEBENDRA
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VAJJHA, RAVIKANTH / DAS, DEBENDRA:
Measurements of Nanofluids Properties and Heat Transfer Computation - Taschenbuch

2010

ISBN: 383837214X

Gebundene Ausgabe, ID: 8438109

Correlations for Nanofluids Properties - Buch, gebundene Ausgabe, 132 S., Beilagen: Paperback, Erschienen: 2010 LAP Lambert Acad. Publ.

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Measurements of Nanofluids Properties and Heat Transfer Computation
Autor:

VAJJHA, RAVIKANTH; DAS, DEBENDRA

Titel:

Measurements of Nanofluids Properties and Heat Transfer Computation

ISBN-Nummer:

383837214X

Research during the past decade has shown that dispersions of nanoscale particles in conventional heat transfer fluids, called nanofluids, can enhance its thermal conductivity. The convective heat transfer coefficient of this engineered fluid is substantially higher than that of the base fluid. The nanofluid's superior heat transfer capability depends on its thermophysical properties. The authors of this treatise, from their experimental expertise, have presented useful correlations for the thermophysical properties, which are valuable for engineering applications using nanofluids. Performing three-dimensional numerical investigations, the authors have shown that the use of nanofluids in a radiator can reduce the size of the heat exchanger surface area and the required pumping power in comparison with the base fluid on the basis of equal heat transfer.

Detailangaben zum Buch - Measurements of Nanofluids Properties and Heat Transfer Computation


EAN (ISBN-13): 9783838372143
ISBN (ISBN-10): 383837214X
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 2010
Herausgeber: LAP Lambert Acad. Publ.
132 Seiten
Gewicht: 0,212 kg
Sprache: eng/Englisch

Buch in der Datenbank seit 27.02.2007 17:22:03
Buch zuletzt gefunden am 07.07.2015 17:07:56
ISBN/EAN: 383837214X

ISBN - alternative Schreibweisen:
3-8383-7214-X, 978-3-8383-7214-3

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