THEORETICAL AND EXPERIMENTAL INVESTIGATION OF SUPERSONIC COMBUSTION

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[4]  J. Masters Some Applications in Physics of the P Function , 1955 .

[5]  The laminar and turbulent mixing of jets of compressible fluid. Part I Flow far from the orifice , 1957 .

[6]  Garry L. Schott,et al.  Kinetic Studies of Hydroxyl Radicals in Shock Waves. II. Induction Times in the Hydrogen-Oxygen Reaction , 1958 .

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[8]  R. Duff Calculation of Reaction Profiles behind Steady-State Shock Waves. I. Application to Detonation Waves , 1958 .

[9]  N. Davidson,et al.  CALCULATION OF REACTION PROFILES BEHIND STEADY STATE SHOCK WAVES. II. THE DISSOCIATION OF AIR , 1959 .

[10]  Par Maurice Roy PROPULSION SUPERSONIQUE PAR TURBORÉACTEURS ET PAR STATORÉACTEURS , 1959 .

[11]  Garry L. Schott,et al.  Kinetic Studies of Hydroxyl Radicals in Shock Waves. III. The OH Concentration Maximum in the Hydrogen‐Oxygen Reaction , 1960 .

[12]  M. Bloom Inviscid Flow with Nonequilibrium Molecular Dissociation for Pressure Distributions Encountered in Hypersonic Flight , 1960 .

[13]  L. Ting Remarks on the Eddy Viscosity in Compressible Mixing Flows , 1960 .

[14]  R. Gross,et al.  A Study of Supersonic Combustion , 1960 .

[15]  Kinetics of Hydrogen Oxidation Downstream of Lean Propane and Hydrogen Flames , 1961 .

[16]  A PRELIMINARY STUDY OF STATIONARY SHOCK-INDUCED COMBUSTION WITH HYDROGEN-AIR MIXTURES , 1961 .

[17]  RECOMBINATION OF HYDROGEN-AIR COMBUSTION PRODUCTS IN AN EXHAUST NOZZLE , 1961 .

[18]  S. Corrsin,et al.  The reactant concentration spectrum in turbulent mixing with a first-order reaction , 1961, Journal of Fluid Mechanics.

[19]  W. Olson RECOMBINATION AND CONDENSATION PROCESSES IN HIGH AREA RATIO NOZZLES , 1962 .

[20]  DEVELOPMENT AND STRUCTURE OF PLANE DETONATION WAVES , 1962 .

[21]  Paul A. Libby,et al.  Theoretical Analysis of Turbulent Mixing of Reactive Gases With Application to Supersonic Combustion of Hydrogen , 1962 .

[22]  J. South,et al.  Characteristic Calculation of Non-Equilibrium Flows , 1964 .