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Study of Non-Isoenergetic Turbulent Jet Mixing in a Constant Area Duct

Study of Non-Isoenergetic Turbulent Jet Mixing in a Constant Area Duct
Author: J. H. Blasenak
Publisher:
Total Pages: 38
Release: 1976
Genre:
ISBN:

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A study of non-isoenergetic turbulent jet mixing between two streams has been conducted. Using a previously derived theoretical analysis for ducted mixing, an experimental investigation was performed to verify this theory and to determine the non-isoenergetic turbulent jet mixing characteristics in a constant area duct. Temperature profiles were measured at several axial locations in the duct for both a concentric and an eccentric configuration. It was determined that the oretical and experimental temperature profiles agreed fairly well for both cases, although the concentric case showed better agreement than the eccentric case. It was also determined that a new constant of turbulence in the initial region was needed for non-isoenergetic mixing, mixing is generally more rapid than the theory predicted, the initial temperature difference between the two streams did not have much effect on the rate of mixing and a higher area ratio produced better agreement between the theory and the experimental data. It was concluded that the theory was good for a fairly simplified analysis. (Author).


A Study of Non-isoenergetic Turbulent Jet Mixing Between Compressible Subsonic Streams in Axi-symmetric Constant Area Duct

A Study of Non-isoenergetic Turbulent Jet Mixing Between Compressible Subsonic Streams in Axi-symmetric Constant Area Duct
Author: K. K. Khanna
Publisher:
Total Pages: 59
Release: 1969
Genre: Aerodynamics
ISBN:

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The problem of turbulent mixing between two compressible streams in a constant area duct is analyzed. The velocity and temperature profiles were worked in the main region of the mixing chamber for axi-symmetric case. Turbulent free jet experimental data is used, to obtain expressions for velocity and temperature as a function of the distance from the inlet to the mixing chamber. It is found that energy diffuses more rapidly than momentum for ducted mixing. The results of the theoretical analysis indicate increasing tendency towards segregation of the streams for decreasing initial velocity difference between the mixing streams. On the basis of the mixing chamber length required to achieve adequate degree of mixing, it is concluded that a corrugated rim primary nozzle is needed to accelerate the mixing rate by increasing the contact surface between the streams. (Author).


Research in Progress

Research in Progress
Author:
Publisher:
Total Pages: 746
Release: 1969
Genre: Military research
ISBN:

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Theoretical and Experimental Investigations on the Mixing of Isoenergetic Confined Co-axial Jets

Theoretical and Experimental Investigations on the Mixing of Isoenergetic Confined Co-axial Jets
Author: W. Tabakoff
Publisher:
Total Pages: 75
Release: 1970
Genre:
ISBN:

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A survey of experimental results for turbulent mixing between two compressible streams in a constant area duct is presented. The experimental results are for area ratios 3 and 7.16, for velocity ratios ranging from 0.4 to 2.8, and with velocity magnitudes varying from 200 ft/sec. to 950 ft/sec. A new constant of turbulence is recommended for the theoretical analysis of the confined jet mixing which uses the free jet mixing concepts. The regions in which this analysis could be used are delineated. (Author).


An Investigation of Ducted, Two-stream, Variable-density, Turbulent Jet Mixing with Recirculation

An Investigation of Ducted, Two-stream, Variable-density, Turbulent Jet Mixing with Recirculation
Author: Roy J. Schulz
Publisher:
Total Pages: 92
Release: 1977
Genre: Jets
ISBN:

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An investigation was conducted of two-stream, variable-density, turbulent jet mixing with recirculation confined within an axisymmetric duct that simulated a combustor configuration. The recirculating flow fields in the combustor simulator were the result of coaxial jet mixing between a central, primary air stream with a velocity of about 650 ft/sec and an annular secondary stream of hydrogen with velocities of 13, 23, or 48 ft/sec, depending on the desired test conditions. Experimental measurements are presented of radial distributions of time-averaged axial velocity and hydrogen mass fraction, axial distributions of time-averaged static pressure on the duct wall, axial velocity on the duct centerline, and hydrogen mass fraction on the duct wall and on the duct centerline. A theoretical study of the experimental flows was also conducted using a finite difference numerical solution technique for the calculation of viscous, recirculating flows. Comparison of theory and experiment shows that the predictive technique and the turbulence transport model require further development before accurate prediction of recirculating turbulent flows can be realized.