Mixing Of Coaxial Streams In A Suction Manifold PDF Download

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Constant Area Mixing of Non-isoenergetic Coaxial Compressible Streams

Constant Area Mixing of Non-isoenergetic Coaxial Compressible Streams
Author: C. E. Peters
Publisher:
Total Pages: 44
Release: 1962
Genre:
ISBN:

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As part of a general investigation of two-stream supersonic diffusers, a theory was developed for the bounded turbulent mixing between coaxial high velocity streams of different composition and temperature. The usual assumption of negligible axial pressure gradient is invalid in this case because the outer stream is bounded by a cylindrical duct. A highly simplified flow model is used which retains the essential features of the actual mixing process; the resulting system of equations is amenable to manual calculation. The theory is correlated with data obtained from an annular nozzle wind tunnel having a central supersonic core of rocket exhaust gases. Correlation is also made with Mikhail's low velocity data for which his more elaborate theory is available for comparison. The simplified theory predicts with reasonable accuracy the experimental axial static pressure and velocity distributions. (Author).


Mixing and Burning of Bounded Coaxial Streams

Mixing and Burning of Bounded Coaxial Streams
Author: C. E. Peters
Publisher:
Total Pages: 44
Release: 1965
Genre:
ISBN:

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An experimental and theoretical investigation of bounded turbulent mixing with chemical reactions is described. Configurations which are applicable to the air-augmented rocket are considered. Experimental results are presented for a mixing apparatus in which a fuel-rich O2-H2 rocket stream was mixed with a secondary airstream inside a conical duct. An integral mixing theory is described, in which conservation equations are satisfied across the duct. The inviscid portions of the duct flow are considered onedimensional, and the mixing zone profiles are assumed to exhibit shape similarity. The theory is extended to include the downstream regime where the mixing region extends across the entire duct. Correlations of the theory with incompressible and reactive compressible mixing experiments indicate that the theory provides a satisfactory over-all representation of the bounded mixing process. (Author).