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Total 23 records

    Exergy analysis of an integrated gas turbine thermoacoustic engine

    , Article ASME 2010 4th International Conference on Energy Sustainability, ES 2010, 17 May 2010 through 22 May 2010, Phoenix, AZ ; Volume 1 , 2010 , Pages 945-951 ; 9780791843949 (ISBN) Ghorbanian, K ; Karimi, M ; Sharif University of Technology
    2010
    Abstract
    An attempt is made to utilize exhaust gases of a small gas turbine in augmenting power output through the employment of a thermoacoustic system. It is assumed that the thermoacoustic system is powered only by the waste heat of the gas turbine. A comprehensive cycle analysis of the integrated gas turbine thermoacoustic engine "IGTTE" is carried out from energy and exergy point of view. Results indicate the thermodynamic advantages of the IGTTE  

    Optomechanical heat transfer between molecules in a nanoplasmonic cavity

    , Article Physical Review A ; Volume 100, Issue 1 , 2019 ; 24699926 (ISSN) Ashrafi, S. M ; Malekfar, R ; Bahrampour, A. R ; Feist, J ; Sharif University of Technology
    American Physical Society  2019
    Abstract
    We explore whether localized surface plasmon polariton modes can transfer heat between molecules placed in the hot spot of a nanoplasmonic cavity through optomechanical interaction with the molecular vibrations. We demonstrate that external driving of the plasmon resonance indeed induces an effective molecule-molecule interaction corresponding to a heat transfer mechanism that can even be more effective in cooling the hotter molecule than its heating due to the vibrational pumping by the plasmon. This mechanism allows us to actively control the rate of heat flow between molecules through the intensity and frequency of the driving laser. © 2019 American Physical Society  

    Acousto-refrigerator with an adjustable mechanical resonator

    , Article International Journal of Engineering, Transactions B: Applications ; Volume 21, Issue 2 , 2008 , Pages 183-196 ; 1728-144X (ISSN) Amjadi, A ; Abolhassani, M. R ; Jafari, S. B ; Sharif University of Technology
    Materials and Energy Research Center  2008
    Abstract
    Thermoacoustics describes energy conversion processes, activated by interaction temperature oscillation, accompanying the pressure oscillation in a sound wave, with solid boundaries. In ordinary experience this interaction of sound and heat cannot be observed, because of the very low temperature differences, but under suitable conditions, it can be emphasized and amplified to create remarkable thermodynamic effects such as, steep thermal gradients, powerful convective heat fluxes, and strong sound fields. We designed and constructed a simple thermoacoustic refrigerator with an adjustable mechanical resonator, coupled with the acoustic resonator. Our experimental data showed about % 10...