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Film Cooling From Spanwise-Oriented Holes in Two Staggered Rows

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Adiabatic effectiveness and iso-energetic heat transfer coefficients are presented from measurements downstream of film-cooling holes inclined at 30 deg. with respect to the test surface in spanwise/normal planes. With this configuration, holes are spaced 3d apart in the spanwise direction and 4d in the streamwise direction in two staggered rows. Results are presented for an injectant to free-stream density ratio near 1.0, and injection blowing ratios from 0.5 to 1.5. Spanwise-averaged adiabatic effectiveness values downstream of the spanwise/normal plane holes are significantly higher than values measured downstream of simple angle holes for x/d < 25–70(depending on blowing ratio) when compared for the same normalized streamwise location, blowing ratio, and spanwise and streamwise hole spacings. Spanwise-averaged iso-energetic Stanton number ratios range between 1.0 and 1.41, increase with blowing ratio at each streamwise station, and show little variation with streamwise location for each value of blowing ratio tested.
Title: Film Cooling From Spanwise-Oriented Holes in Two Staggered Rows
Description:
Adiabatic effectiveness and iso-energetic heat transfer coefficients are presented from measurements downstream of film-cooling holes inclined at 30 deg.
with respect to the test surface in spanwise/normal planes.
With this configuration, holes are spaced 3d apart in the spanwise direction and 4d in the streamwise direction in two staggered rows.
Results are presented for an injectant to free-stream density ratio near 1.
0, and injection blowing ratios from 0.
5 to 1.
5.
Spanwise-averaged adiabatic effectiveness values downstream of the spanwise/normal plane holes are significantly higher than values measured downstream of simple angle holes for x/d < 25–70(depending on blowing ratio) when compared for the same normalized streamwise location, blowing ratio, and spanwise and streamwise hole spacings.
Spanwise-averaged iso-energetic Stanton number ratios range between 1.
0 and 1.
41, increase with blowing ratio at each streamwise station, and show little variation with streamwise location for each value of blowing ratio tested.

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