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    Effects of Core Flow Swirl on the Flow Characteristics of a Scalloped Forced Mixer

    Source: Journal of Engineering for Gas Turbines and Power:;2012:;volume( 134 ):;issue: 011::page 111201
    Author:
    Zhijun Lei
    ,
    Mark Cunningham
    ,
    Patrick Germain
    ,
    Ali Mahallati
    DOI: 10.1115/1.4005968
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: This paper presents a detailed experimental investigation of the influence of core flow swirl on the mixing and performance of a scaled turbofan mixer with 12 scalloped lobes. Measurements were made downstream of the mixer in a coaxial wind tunnel. The core-to-bypass velocity ratio was set to 2:1, temperature ratio to 1.0, and pressure ratio to 1.03, giving a Reynolds number of 5.2 × 105 , based on the core flow velocity and equivalent diameter. In the core flow, the background turbulence intensity was raised to 5% and the swirl angle was varied from 0 deg to 30 deg with five vane geometries. At low swirl angles, additional streamwise vortices were generated by the deformation of normal vortices due to the scalloped lobes. With increased core swirl, greater than 10 deg, the additional streamwise vortices were generated mainly due to radial velocity deflection, rather than stretching and deformation of normal vortices. At high swirl angles, stronger streamwise vortices and rapid interaction between various vortices promoted downstream mixing. Mixing was enhanced with minimal pressure and thrust losses for the inlet swirl angles less than 10 deg. However, the reversed flow downstream of the center body was a dominant contributor to the loss of thrust at the maximum core flow swirl angle of 30 deg.
    keyword(s): Pressure , Flow (Dynamics) , Vortices , Wakes AND Thrust ,
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      Effects of Core Flow Swirl on the Flow Characteristics of a Scalloped Forced Mixer

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    https://yetl.yabesh.ir/yetl1/handle/yetl/148697
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    • Journal of Engineering for Gas Turbines and Power

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    contributor authorZhijun Lei
    contributor authorMark Cunningham
    contributor authorPatrick Germain
    contributor authorAli Mahallati
    date accessioned2017-05-09T00:49:49Z
    date available2017-05-09T00:49:49Z
    date copyrightNovember, 2012
    date issued2012
    identifier issn1528-8919
    identifier otherJETPEZ-926033#111201_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/148697
    description abstractThis paper presents a detailed experimental investigation of the influence of core flow swirl on the mixing and performance of a scaled turbofan mixer with 12 scalloped lobes. Measurements were made downstream of the mixer in a coaxial wind tunnel. The core-to-bypass velocity ratio was set to 2:1, temperature ratio to 1.0, and pressure ratio to 1.03, giving a Reynolds number of 5.2 × 105 , based on the core flow velocity and equivalent diameter. In the core flow, the background turbulence intensity was raised to 5% and the swirl angle was varied from 0 deg to 30 deg with five vane geometries. At low swirl angles, additional streamwise vortices were generated by the deformation of normal vortices due to the scalloped lobes. With increased core swirl, greater than 10 deg, the additional streamwise vortices were generated mainly due to radial velocity deflection, rather than stretching and deformation of normal vortices. At high swirl angles, stronger streamwise vortices and rapid interaction between various vortices promoted downstream mixing. Mixing was enhanced with minimal pressure and thrust losses for the inlet swirl angles less than 10 deg. However, the reversed flow downstream of the center body was a dominant contributor to the loss of thrust at the maximum core flow swirl angle of 30 deg.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleEffects of Core Flow Swirl on the Flow Characteristics of a Scalloped Forced Mixer
    typeJournal Paper
    journal volume134
    journal issue11
    journal titleJournal of Engineering for Gas Turbines and Power
    identifier doi10.1115/1.4005968
    journal fristpage111201
    identifier eissn0742-4795
    keywordsPressure
    keywordsFlow (Dynamics)
    keywordsVortices
    keywordsWakes AND Thrust
    treeJournal of Engineering for Gas Turbines and Power:;2012:;volume( 134 ):;issue: 011
    contenttypeFulltext
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