The interaction of an incident shock wave with liquid fuel drops
Incident shock wave interaction with liquid hydrocarbon fuel drops in oxidizing and inert atmospheres, considering combustion characteristics and ignition mechanism
Engineering topics
Publications and source records attributed to Nicholls, J. A..
Incident shock wave interaction with liquid hydrocarbon fuel drops in oxidizing and inert atmospheres, considering combustion characteristics and ignition mechanism
Spray generator produces streams of uniform-size droplets issuing at uniform rate by applying an oscillatory disturbance to free liquid jets. Jets of varying diameters can be grouped together and oscillated as a group to produce simultaneous streams of uniform-size droplets.
Liquid droplet shape effect flow field velocity and pressure distribution over windward surface in high speed gas streams
Detonation propagation velocity through tubes with walls coated with thin fuel film, using turbulent boundary layer theory
Two phase detonation relating to rocket instability
Water droplet disintegration in supersonic airstreams
Combustion processes and ignition criteria in shock wave ignition of liquid fuel drop in oxidizing atmosphere
Wind tunnel drag measurements on subsonic sphere
Two phase detonations of fuel in liquid layer on shock tube wall with gaseous oxidizer, presenting one dimensional approximation for film detonation propagation
Two phase detonations in liquid-gas system of liquid rocket motor
High velocity gas stream induced shattering of liquid drops, disintegration rate and breakup time
Liquid diethylcyclohexane /DECH/ sprays detonation propagation in gaseous oxygen, studying drop size effect on steady state development
Propagation of detonation wave in tube containing single stream of diethylcyclohexane droplets dispersed in gaseous oxygen
Spherical particles drag coefficient when accelerating in laminar flow
Experimental results of drop size effects in spray detonations of liquid diethylcyclohexane
High velocity gas stream induced shattering of liquid drops, disintegration rate and breakup time
Heterogeneous detonations, discussing polydisperse and monodisperse spray detonations and liquid fuel film shock-induced combustion
Heterogeneous detonations, discussing polydisperse and monodisperse spray detonations and liquid fuel film shock-induced combustion