Comparison of central axis and jet ring coolant supply for turbine disk cooling on a SSME-HPOTP model

The test facility, test methods and results are presented for an experimental study modeling the cooling of turbine disks in the blade attachment regions with multiple impinging jets, in a configuration simulating the disk cooling method employed on the Space Shuttle Main Engine oxygen turbopump. The study's objective was to provide a comparison of detailed local convection heat transfer rates obtained for a single center-supply of disk coolant with those obtained with the present flight configuration where disk coolant is supplied through an array of 19 jets located near the disk outer radius. Specially constructed disk models were used in a program designed to evaluate possible benefits and identify any possible detrimental effects involved in employing an alternate disk cooling scheme. The study involved the design, construction and testing of two full scale rotating model disks, one plane and smooth for baseline testing and the second contoured to the present flight configuration, together with the corresponding plane and contoured stator disks. Local heat transfer rates are determined from the color display of encapsulated liquid crystals coated on the disk in conjunction with use of a computer vision system. The test program was composed of a wide variety of disk speeds, flowrates, and geometrical configurations, including testing for the effects of disk boltheads and gas ingestion from the gas path region radially outboard of the disk-cavity.

[1]  D. E. Metzger,et al.  Heat Transfer Between an Impinging Jet and a Rotating Disk , 1977 .

[2]  L. Bogusławski,et al.  Local Heat Transfer From a Rotating Disk in an Impinging Round Jet , 1986 .

[3]  Aksel Lydersen,et al.  Fluid flow and heat transfer , 1979 .

[4]  E. C. Cobb,et al.  Heat transfer from a rotating disk , 1956, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.