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  • FLUID MECHANICS AND HEAT TRANSFER  (2)
  • PHYSICS, ATOMIC, MOLECULAR, AND NUCLEAR  (1)
  • 1
    Publication Date: 2019-05-30
    Description: Electron beams from duoplasmatron using hollow cathode arc, noting current density distributions
    Keywords: PHYSICS, ATOMIC, MOLECULAR, AND NUCLEAR
    Type: JOURNAL OF APPLIED PHYSICS
    Format: text
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  • 2
    Publication Date: 2019-07-13
    Description: A comparative study of wall mounted swept ramp injectors fitted with injector nozzles of different shape has been conducted in a constant area duct to explore mixing enhancement techniques for scramjet combustors. Six different injector nozzle inserts, all having equal exit and throat areas, were tested to explore the interaction between the preconditioned fuel jet and the vortical flowfield produced by the ramp: circular nozzle (baseline), nozzle with three downstream facing steps, nozzle with four vortex generators, elliptical nozzle, tapered-slot nozzle, and trapezoidal nozzle. The main flow was air at Mach 2, and the fuel was simulated by air injected at Mach 1.63 or by helium injected at Mach 1.7. Pressure and temperature surveys, combined with Mie and Rayleigh scattering visualization, were used to investigate the flow field. The experiments were compared with three dimensional Navier-Stokes computations. The results indicate that the mixing process is dominated by the streamwise vorticity generated by the ramp, the injectors' inner geometry having a minor effect. It was also found that the injectant/air mixing in the far-field is nearly independent of the injector geometry, molecular weight of the injectant, and the initial convective Mach number.
    Keywords: FLUID MECHANICS AND HEAT TRANSFER
    Type: NASA-CR-4634 , NAS 1.26:4634
    Format: application/pdf
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  • 3
    Publication Date: 2019-07-13
    Description: Shock tube experiments were performed in order to determine the response of a single hot-film element of a sensor array to transiently induced flow behind weak normal shock waves. The experiments attempt to isolate the response due only to the change in convective heat transfer at the hot-film surface mounted on the wall of the shock tube. The experiments are described, the results being correlated with transient boundary layer theory and compared with an independent set of experimental results. One of the findings indicates that the change in the air properties (temperature and pressure) precedes the air mass transport, causing an ambiguity in the sensor response to the development of the velocity boundary layer. Also, a transient, local heat transfer coefficient is formulated to be used as a forcing function in a hot-film instrument model and simulation which remains under investigation.
    Keywords: FLUID MECHANICS AND HEAT TRANSFER
    Type: International Symposium on Nonsteady Fluid Dynamics; Jun 04, 1990 - Jun 07, 1990; Toronto; Canada
    Format: text
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