Experimental and Numerical Investigation of Sweeping Jet Film Cooling

Author:

Hossain Mohammad A.1,Prenter Robin1,Lundgreen Ryan K.1,Ameri Ali1,Gregory James W.1,Bons Jeffrey P.1

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Aerospace Research Center, The Ohio State University, Columbus, OH 43235 e-mail:

Abstract

A companion experimental and numerical study was conducted for the performance of a row of five sweeping jet (SJ) film cooling holes consisting of conventional curved fluidic oscillators with an aspect ratio (AR) of unity and a hole spacing of P/D = 8.5. Adiabatic film effectiveness (η), thermal field (θ), convective heat transfer coefficient (h), and discharge coefficient (CD) were measured at two different freestream turbulence levels (Tu = 0.4% and 10.1%) and four blowing ratios (M = 0.98, 1.97, 2.94, and 3.96) at a density ratio of 1.04 and hole Reynolds number of ReD = 2800. Adiabatic film effectiveness and thermal field data were also acquired for a baseline 777-shaped hole. The SJ film cooling hole showed significant improvement in cooling effectiveness in the lateral direction due to the sweeping action of the fluidic oscillator. An unsteady Reynolds-averaged Navier–Stokes (URANS) simulation was performed to evaluate the flow field at the exit of the hole. Time-resolved flow fields revealed two alternating streamwise vortices at all blowing ratios. The sense of rotation of these alternating vortices is opposite to the traditional counter-rotating vortex pair (CRVP) found in a “jet in crossflow” and serves to spread the film coolant laterally.

Funder

U.S. Department of Energy

Publisher

ASME International

Subject

Mechanical Engineering

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5. Papell, S. S., 1984, “Vortex Generating Flow Passage Design for Increased Film-Cooling Effectiveness and Surface Coverage,” 22nd National Heat Transfer Conference, Niagara Falls, NY, Aug. 5–8, Paper No. 84-HT-22.http://adsabs.harvard.edu/abs/1984STIN...8422909P

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