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For examining the ability of laser ignition, a quiescent lean-fuel propane air mixture was ignited in a constant-volume chamber by a spark induced by a pair of electrodes and an automotive spark driver, a spark induced by focused high-power laser, or a spark induced by focused high-power laser between a pair of dummy electrodes, where the deposited energy into the gas was the same in all cases.
The methane/coal dust/air mixture was ignited by a 7 m long epoxypropane mist cloud explosion.
The premixed mixture was ignited at the edge of the congested three-dimensional rigs which consisted of vertical and horizontal pipes.
If the mixture was ignited at times long after the onset of cool flame, the mixture was found to be desensitized and the run-up distance increased.
The mixture was ignited at the center of the vessel by a hot wire, and then a spherically propagating flame was formed.
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For example, a carburetor in an internal-combustion engine can be defined in terms of how it regulates the flow of gasoline and oxygen into the cylinders where the mixture is ignited, causing the piston to move.
A solid mixture is ignited from above.
In all the tests the methane/air mixture were ignited using a standard fuse cap.
Next, a stoichiometric (hydrogen (30%)–air) mixture is ignited by spark discharge with E= 1.25Emin.
When a discharge occurs in the unburned mixture ahead of the detonation wave, the mixture is ignited prior to the detonation arrival.
When the gas mixture is ignited in the large vessel, the maximum explosion pressure and explosion pressure rising rate in the small vessel raise.
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