NASA NTRS · 19820051844
Flow distributions and discharge coefficient effects for jet array impingement with initial crossflow
Abstract
To model the impingement cooled mid-chord region of gas turbine airfoils in cases where an initial crossflow is present, the paper presents experimentally determined flow distributions for jet arrays with ten spanwise rows of holes, which range from uniform to highly nonuniform. The jet flow after impingement is constrained to exit in a single direction along the channel formed by the jet orifice plate and the impingement surface. The streamwise distributions and crossflow velocities are presented for ratios of the initial crossflow rate to the total jet flow rate ranging from zero to unity. For crossflow to jet velocity ratios greater than a value somewhat less than unity, jet orifice discharge coefficients do not remain constant, but decrease significantly, showing a secondary dependence on z/d, where z is the channel height and d is the jet hole diameter.
Keep this discovery
Explore connections, maps & timelines
Florschuetz, L. W., Isoda, Y.. 1982-04-01. Flow distributions and discharge coefficient effects for jet array impingement with initial crossflow. https://ntrs.nasa.gov/citations/19820051844
Cite the original work for its findings. Save a collection to share your selection of sources.