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LES of film cooling for different jet fluids
作者姓名:P. Renze  W. Schrder  M. Meinke
作者单位:Aerodynamisches Institut RWTH Aachen,52062 Aachen,Germany,Aerodynamisches Institut,RWTH Aachen,52062 Aachen,Germany,Aerodynamisches Institut,RWTH Aachen,52062 Aachen,Germany
摘    要:Introduction In modern gas turbines fil mcooling mecha-nisms protect the turbine components from thethermal stresses resulting fromthe exposure tothe hot gas stream.Since the technical designprocess of fil m cooling systems depends on theexact knowledge o…

关 键 词:aerospace  propulsion  system    large-addy  simulations  (LES)    jet-in-a-crossflow    film  cooling    density  ratio    velocity  ratio    cooling  efficiency
文章编号:1000-8055(2007)04-0521-10
收稿时间:2006/10/16 0:00:00
修稿时间:2006年10月16

LES of film cooling for different jet fluids
P.Renze,W.Schrder,M.Meinke.LES of film cooling for different jet fluids[J].Journal of Aerospace Power,2007,22(4):521-530.
Authors:PRenze  WSchrder  MMeinke
Institution:Aerodynamisches Institut,RWTH Aachen,52062 Aachen,Germany
Abstract:The present paper investigates the impact of the velocity and density ratio on the turbulent mixing process in gas turbine blade film cooling.A cooling fluid is injected from an inclined pipe at α=30° into a turbulent boundary layer profile at a freestream Reynolds number of Re∞=400000.This jet-in-a-crossflow(JICF) problem is investigated using large-eddy simulations(LES).The governing equations comprise the Navier-Stokes equations plus additional transport equations for several species to simulate a non-reacting gas mixture.A variation of the density ratio is simulated by the heat-mass transfer analogy,i.e.,gases of different density are effused into an an air crossflow at a constant temperature.An efficient large-eddy simulation method for low subsonic flows based on an implicit dual time-stepping scheme combined with low Mach number preconditioning is applied.The numerical results and experimental velocity data measured using two-component particle-image velocimetry (PIV) are in excellent agreement.The results show the dynamics of the flow field in the vicinity of the jet hole,i.e.,the recirculation region and the inclination of the shear layers,to be mainly determined by the velocity ratio.However,evaluating the cooling efficiency downstream of the jet hole the mass flux ratio proves to be the dominant similarity parameter,i.e.,the density ratio between the fluids and the velocity ratio have to be considered.
Keywords:aerospace propulsion system  large-addy simulations (LES)  jet-in-a-crossflow  film cooling  density ratio  velocity ratio  cooling efficiency  fluids  different  cooling efficiency  mass flux  similarity  parameter  However  velocity ratio  recirculation  region  shear layers  numerical results  show  dynamics  flow field  vicinity  hole  experimental  data  velocimetry
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