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层板与旋转轴所成角度对受限层板换热能力的影响

Effect of angle between lamilloy and rotation axis on heat transfer capability of limited lamilloy
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摘要 采用数值模拟的方法对旋转状态下受限层板在不同层板与旋转轴所成角度条件下的换热特性进行研究,得出了层板与旋转轴所成角度对层板换热能力的影响规律.结果表明:层板与旋转轴所成角度不同时,表面传热系数呈现一定的相似性;层板与旋转轴所成角为90°和270°时表面传热系数最高,浮升力的影响最小,层板与旋转轴所成角度为0°和180°时,表面传热系数最低,浮升力的影响最大;将科氏力和浮升力对换热能力的影响单独研究,平行于层板的科氏力比垂直于层板的科氏力对流体的影响强烈. Heat transfer characteristics in condition of different angles between iamilloy and rotation axis in limited lamilloy under rotating state was researched by numerical simulation. The relation between lamilloy heat transfer capacity and angle between lamilloy and rotation axis was acquired. Results show that surface heat transfer coefficients present similar characteristic with different angles between lamilloy and rotation axis. The surface heat transfer coefficient is highest and the effect of buoyancy force is smallest when the angles between lamilloy and rotation axis are 90°and 270°. The surface heat transfer coefficient is lowest and the effect of buoyancy force is biggest when the angles between lamilloy and rotation axis are 0°and 180°. The effects of Coriolis force and buoyancy force are researched separately. The effect of Coriolis force in parallel to the lamilloy on flow is more remarkable than that perpendicular to the lamilloy.
出处 《航空动力学报》 EI CAS CSCD 北大核心 2014年第9期2181-2187,共7页 Journal of Aerospace Power
关键词 受限层板 表面传热系数 科氏力 浮升力 层板与旋转轴所成角度 limited lamilloy surface heat transfer coefficient Coriolis force buoyancy force angle between lamilloy and rotation axis
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参考文献17

  • 1Chen H C,Jang Y J,Han J C.Computation of heat transfer in rotating two-pass square channels by a second-moment closure model[J].International Journal of Heat and Mass Transfer,2000,43(9):1603-1616.
  • 2Chang S W,Morris W D.Heat transfer in a radially rotating square duct fitted with in-line transverse ribs[J].International Journal of Thermal Sciences,2003,42(3):267-282.
  • 3Xun Q Q,Wang B C,Yee E.Large-eddy simulation of turbulent heat convection in a spanwise rotating channel flow[J].International Journal of Heat and Mass Transfer,2011,54(1):698-716.
  • 4Parsons J A,Han J C,Zhang Y M.Wall heating effect on local heat transfer in a rotating two-pass square channel with 90-degree rib turbulators[J].International Journal of Heat and Mass Transfer,1994,37(9):1411-1420.
  • 5Johnson B V,Wagner J H,Steuber G D.Heat transfer in rotating serpentine passages with selected model orientations for smooth or skewed trip walls[J].Journal of Turbomachinery,1994,116(4):738-744.
  • 6Liou T M,Chang S W,Hung J H.High rotation number heat transfer of a 45° rib-roughened rectangular duct with two channel orientations[J].International Journal of Heat and Mass Transfer,2007,50(19):4063-4078.
  • 7Luai A,Han J C.Effect of rotation on heat transfer in two-pass square channels with five different orientations of 45° angled rib turbulators[J].International Journal of Heat and Mass Transfer,2003,46(4):653-669.
  • 8Mohammad A Q,Chen H C,Han J C.A numerical study of flow and heat transfer in rotating rectangular channels(AR=4) with 45° rib turbulators by Reynolds stress turbulence model[J].Journal of Heat Transfer,2003,125(1):19-26.
  • 9Su G G,Chen H C,Han J C.Computation of flow and heat transfer in rotating two-pass rectangular channels(AR=1∶1,1∶2 and 1∶4) with smooth walls by a Reynolds stress turbulence model[J].International Journal of Heat and Mass Transfer,2004,47(26):5665-5683.
  • 10Nealy D A,Relder S B.Evaluation of laminated porous wall material for combustor liner cooling[J].Journal of Engineering for Power,1980,102(2):268-276.

二级参考文献25

  • 1杨敏,常海萍,吴培光.旋转条件下半封闭空间内多孔冲击平均换热特性实验[J].航空动力学报,2006,21(6):984-988. 被引量:1
  • 2Parsons J A, Han J C. Rotation effect on jet impingement heat transfer in smooth rectangular channels with heated target walls and radially outward cross flow [ J ]. International Journal of Heat and Mass Transfer, 1998, 141 (13) :2059-2071.
  • 3Parsons J A, Han J C,Lee C P. Rotation effect on jet impingement heat transfer in smooth rectangular channels with four heated walls and radically outward cross flow [J]. Journal of Turbo Machinery, 1998, 20(3) :79-85.
  • 4Parsons J A, Han J C. Rotation effect on jet impingement heat transfer in smooth rectangular channels with flhn coolant extraction [ J ]. International Journal of Rotating Machinery, 2001, 17(2) :87-103.
  • 5Garg V K. Heat transfer on a fihn-cooled rotating blade [ J ]. International Journal of Heat and Fluid Flow, 2000, 21(2) :134-145.
  • 6Epstein A H, Kerrehrock J L, Koo J J, et al. Rotational effect on impingement cooling [ C ]. Honolulu: Proceedings of the First International symposium on Transport Phenomena, 1987:86-102.
  • 7Mattern C, Hennecke D K. Influence of rotation on impingement cooling[ C ]. New York : Proceedings of the 1996 International Gas Turbine and Aeroengine Congress and Exhibition- TurboExpo ' 96, American Society of Mechanical Engineers, 1996.
  • 8Epstein A H,Kerrebrock J L,Koo J J,et al.Rotational effect on impingement cooling[C]∥Proceedings of the First international symposium on transport phenomena,Heat transfer and fluid flow in rotating machinery,Honolulu:HI,hemisphere Publ.Corp.,1987:86-102.
  • 9Mattern C,Hennecke D K.Influence of rotation on impingement cooling[C]∥Proceedings of the 1996 international gas turbine and aeroengine congress and exhibition-turboExpo'96,New York:American Society of Mechanical Engineers,1996.
  • 10Parsons J A,Han J C.Rotation effect on jet impingement heat transfer in smooth rectangular channels with heated target walls and Radially outward cross flow[J].International Journal of Heat and Mass Transfer,1998,41(13):2059-2071.

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