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    Simultaneous Heat Flux and Velocity Measurements in a Transonic Turbine Cascade

    Source: Journal of Turbomachinery:;2005:;volume( 127 ):;issue: 003::page 502
    Author:
    D. G. Holmberg
    ,
    T. E. Diller
    DOI: 10.1115/1.1860576
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: The gas turbine engine combustor generates turbulence that increases heat transfer on downstream turbine blades, but the mechanisms of that heat transfer are not fully understood. In this work, simultaneous time-resolved surface heat flux and velocity measurements have been made at three locations on the pressure surface of a high-turning transonic airfoil. Grids were used upstream of the linear turbine cascade to produce free-stream turbulence with two different inlet length scales, but the same turbulence intensity. High-frequency response instrumentation was used to obtain both steady and unsteady measurements. Results show that the time-averaged heat transfer is larger for the flow with the smaller integral length scale. Frequency-domain analysis demonstrates coherence between the fluctuations of heat flux and velocity over a broad range of frequencies. This is a direct indication that free-stream turbulent eddies penetrate completely through the boundary layer to the surface.
    keyword(s): Flow (Dynamics) , Turbulence , Cascades (Fluid dynamics) , Turbines , Velocity measurement , Heat flux , Wire , Frequency , Heat transfer , Boundary layers AND Instrumentation ,
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      Simultaneous Heat Flux and Velocity Measurements in a Transonic Turbine Cascade

    URI
    http://yetl.yabesh.ir/yetl1/handle/yetl/132788
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    contributor authorD. G. Holmberg
    contributor authorT. E. Diller
    date accessioned2017-05-09T00:18:07Z
    date available2017-05-09T00:18:07Z
    date copyrightJuly, 2005
    date issued2005
    identifier issn0889-504X
    identifier otherJOTUEI-28721#502_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/132788
    description abstractThe gas turbine engine combustor generates turbulence that increases heat transfer on downstream turbine blades, but the mechanisms of that heat transfer are not fully understood. In this work, simultaneous time-resolved surface heat flux and velocity measurements have been made at three locations on the pressure surface of a high-turning transonic airfoil. Grids were used upstream of the linear turbine cascade to produce free-stream turbulence with two different inlet length scales, but the same turbulence intensity. High-frequency response instrumentation was used to obtain both steady and unsteady measurements. Results show that the time-averaged heat transfer is larger for the flow with the smaller integral length scale. Frequency-domain analysis demonstrates coherence between the fluctuations of heat flux and velocity over a broad range of frequencies. This is a direct indication that free-stream turbulent eddies penetrate completely through the boundary layer to the surface.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleSimultaneous Heat Flux and Velocity Measurements in a Transonic Turbine Cascade
    typeJournal Paper
    journal volume127
    journal issue3
    journal titleJournal of Turbomachinery
    identifier doi10.1115/1.1860576
    journal fristpage502
    journal lastpage506
    identifier eissn1528-8900
    keywordsFlow (Dynamics)
    keywordsTurbulence
    keywordsCascades (Fluid dynamics)
    keywordsTurbines
    keywordsVelocity measurement
    keywordsHeat flux
    keywordsWire
    keywordsFrequency
    keywordsHeat transfer
    keywordsBoundary layers AND Instrumentation
    treeJournal of Turbomachinery:;2005:;volume( 127 ):;issue: 003
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
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