Index of /turbdata/agard/chapter6/SHL04/balance
DATA BASE SHL04
directory: balance
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list of included files
read.me : this file
balancek.200
balancuv.200
convk.200
derivl.200
derivs.200
diffk.200
epsl.200
momentum.200
prodk.200
balancek.800
balancuv.800
convk.800
derivl.800
derivs.800
diffk.800
epsl.800
momentum.800
prodk.800
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Files descriptions:
These files contains data to balance:
energy, shear stress and momentum balance equations.This quantities are
normalized by the velocity difference Delta_U and the vorticity thickness
delta_omega. The balances are established at two streamwise locations:
200mm from trailing edge : files *.200
800mm from trailing edge : files *.800
energy balance is written :
CONVECTION+DIFFUSION+PRODUCTION+DISSIPATION=0
shear-stress balance is written
CONVECTION+DIFFUSION+PRODUCTION+PRESSURE STRAIN=0
notations: < > corresponds to temporal average
u, v, w are fluctuating velocity components (resp. longitudinal,
normal to the plate, spanwise)
delta_omega is the vorticity thickness
Delta_U is the difference of velocity (high speed - low speed)
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Files convk.DDD
Terms appearing in convectio of k
col. #1 y/delta_omega
col. #2 U* dk/dx
col. #3 V* dk/dy
col. #4 convetion of k
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Filesdiffk.DDD
Terms appearing in diffusion of k
col. #1 y/delta_omega
col. #2 -.5*d/dx (<u*u*u + u*v*v + u*w*w>)
col. #3 -.5*d/dy (<u*u*v + v*v*v + v*w*w>)
col. #4 diffusion of k
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Files prodk.DDD
Terms appearing in production of k
col. #1 y/delta_omega
col. #2 -(<u*u - v*v>) * dU/dx
col. #3 -<u*v> * dU/dy
col. #4 production of k
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File epsl.DDD
col. #1 y/delta_omega
col. #2 dissipation epsilon
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Files balancek.DDD
Terms appearing in the balance of k
col. #1 y/delta_omega
col. #2 remainder of balance
col. #3 dissipation by difference
col. #4 dissipation measured
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Files balancuv.DDD
Terms appearing in the balance of shear stress
col. #1 y/delta_omega
col. #2 U* d/dx <u*v>
col. #3 V* d/dy <u*v>
col. #4 convection
col. #5 diffusion
col. #6 production
col. #7 press_strain
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Files momentum.DDD
Terms appearing in the momentum equation
col. #1 y/delta_omega
col. #2 U*dU/dx
col. #3 V*dU/dy
col. #4 -d/dy <u*v>
col. #5 -d/dx(<u*u - v*v>)
col. #6 U*dU/dx +V*dU/dy
col. #7 -d/dy <u*v> -d/dx (<u*u - v*v>)
col. #8 should_be_0
col. #9 V from momentum balance