Muthudinesh kumar r (4 risultati)

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  • Lingua: Inglese

    Editore: LAP Lambert Academic Publishing, 2026

    6630097343 / 9786630097344

    • Brossura

    Da: California Books, Miami, FL, U.S.A.California Books

    Venditore con 5 stelle
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    Condizione: Nuovo

    EUR 61,61

     Spedizione gratuita 
    Spedito in U.S.A.

    Quantità: Più di 20 disponibili

    Condizione: New.

  • Lingua: Inglese

    Editore: LAP LAMBERT Academic Publishing Mai 2026, 2026

    6630097343 / 9786630097344

    • Brossura
    • Print on Demand

    Da: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, GermaniaBuchWeltWeit Ludwig Meier e.K.

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    Condizione: Nuovo

    EUR 48,90

    EUR 23,00 spedizione 
    Spedito da Germania a U.S.A.

    Quantità: 2 disponibili

    Taschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This book investigates the thermal performance of heat pipes using conventional fluids and Al¿O¿-based nanofluids. Heat pipes are highly efficient heat transfer devices that operate through phase change mechanisms involving evaporation and condensation. The study focuses on key parameters such as fill ratio and inclination angle, along with performance limitations including capillary, boiling, sonic, viscous, entrainment, and condenser limits.An experimental setup is developed to evaluate thermal efficiency, thermal resistance, and temperature distribution under varying conditions. Results show that nanofluids significantly enhance heat transfer performance compared to deionized water, with optimal performance observed at a 75% fill ratio and 30° inclination. The study concludes that nanofluids improve efficiency and reduce thermal resistance, making them suitable for advanced thermal management applications. 56 pp. Englisch.…

  • Lingua: Inglese

    Editore: LAP LAMBERT Academic Publishing, 2026

    6630097343 / 9786630097344

    • Brossura
    • Print on Demand

    Da: AHA-BUCH GmbH, Einbeck, GermaniaAHA-BUCH GmbH

    Venditore con 5 stelle
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    Condizione: Nuovo

    EUR 54,60

    EUR 35,00 spedizione 
    Spedito da Germania a U.S.A.

    Quantità: 2 disponibili

    Taschenbuch. Condizione: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - This book investigates the thermal performance of heat pipes using conventional fluids and Al2O -based nanofluids. Heat pipes are highly efficient heat transfer devices that operate through phase change mechanisms involving evaporation and condensation. The study focuses on key parameters such as fill ratio and inclination angle, along with performance limitations including capillary, boiling, sonic, viscous, entrainment, and condenser limits.An experimental setup is developed to evaluate thermal efficiency, thermal resistance, and temperature distribution under varying conditions. Results show that nanofluids significantly enhance heat transfer performance compared to deionized water, with optimal performance observed at a 75% fill ratio and 30° inclination. The study concludes that nanofluids improve efficiency and reduce thermal resistance, making them suitable for advanced thermal management applications.…

  • Lingua: Inglese

    Editore: LAP LAMBERT Academic Publishing Mai 2026, 2026

    6630097343 / 9786630097344

    • Brossura
    • Print on Demand

    Da: buchversandmimpf2000, Emtmannsberg, BAYE, Germaniabuchversandmimpf2000

    Venditore con 5 stelle
    Contatta il venditore

    Condizione: Nuovo

    EUR 48,90

    EUR 60,00 spedizione 
    Spedito da Germania a U.S.A.

    Quantità: 1 disponibile

    Taschenbuch. Condizione: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This book investigates the thermal performance of heat pipes using conventional fluids and Al¿O¿-based nanofluids. Heat pipes are highly efficient heat transfer devices that operate through phase change mechanisms involving evaporation and condensation. The study focuses on key parameters such as fill ratio and inclination angle, along with performance limitations including capillary, boiling, sonic, viscous, entrainment, and condenser limits.An experimental setup is developed to evaluate thermal efficiency, thermal resistance, and temperature distribution under varying conditions. Results show that nanofluids significantly enhance heat transfer performance compared to deionized water, with optimal performance observed at a 75% fill ratio and 30° inclination. The study concludes that nanofluids improve efficiency and reduce thermal resistance, making them suitable for advanced thermal management applications. 56 pp. Englisch.…