Computation of gaseous detonation parameters
Fortran program for computation of gas detonation parameters on IBM 7090 computer
Engineering topics
Publications and source records attributed to Oppenheim, A. K..
Fortran program for computation of gas detonation parameters on IBM 7090 computer
Problems in detonation which include wave development, stability and structure
Utilization of detonation wave to investigate transient processes in gas wave dynamics of rocket propulsion systems
Problems in detonation which include wave development, stability and structure
Gaseous phase of detonation - relation to rocket propulsion
Generation of shock wave by flame in explosive gas during initial acceleration
Laminar detonation wave structure in ozone for three models - coupled wave, von neuman-doring- zeldovich model, and decoupled wave
Numerical solution of the equations determining the detonation wave structure, assuming steady one-dimensional flow and perfect behavior of reactant and products
Oscillation frequency, stability, and structure of detonation waves using von neumann theorem
Detonation wave study for application to chemical propulsion systems, nuclear propulsion, and pulsed plasma accelerators
Experiment on the influence of ignition geometry on initial flame acceleration in spark-ignited stoichiometric hydrogen-oxygen mixtures at n.t.p.
Development and structure of plane detonation waves
Explosion generated pressure field
Influence of wave reflections on the development of detonation