Sentence examples for range of ignition from inspiring English sources

Exact(5)

A number of experimental investigations on aluminum additive combustion have reported a wide range of ignition temperatures even within the same particle distribution.

A qualitative analysis [18] suggested that, within the multistage oxidation, different particle self-heating rates were responsible for the range of ignition temperatures.

Detailed analysis of the dominant chemistry and the relative roles of reaction and diffusion is implemented by tracking the evolution of four representative kernels that characterize the range of ignition behaviors observed in the simulation.

Flame kernel formation, the progress and topology of the flame propagating upstream, and stabilization as a tubular edge flame are analyzed in detail and compared to experimental data for a range of ignition parameters.

For a range of ignition parameters, preliminary results are in good agreements with experimental data and show that the model parameter evolves with time and depends on operating conditions, validating the dynamic procedure.

Similar(55)

Qualitative analysis of the rates of oxidation at the different stages enables one to understand the wide range of aluminum ignition temperatures observed for particles of different sizes.

It is shown that the interplay between the thermal regimes of reaction, the collective effects of the suspension, and the collective effects of agglomeration can lead to a wide range of observed ignition and combustion phenomena that are independent of the material-specific fuel and oxide properties.

A detailed mechanism for cyclohexane with 1081 species and 4269 reactions is reduced using ISASA over a wide range of conditions with ignition delay times as criteria for selecting species and a 61-species mechanism is obtained.

Furthermore, the present model was also validated against previous experimental data of n-propylbenzene combustion under a wide range of conditions, including ignition delay times, laminar flame speeds, extinction strain rates, speciation profiles in atmospheric pressure JSR oxidation, flow reactor oxidation and high pressure shock tube pyrolysis and oxidation.

And the industry tests look at a broad range of things, like ignition, heat release, ease of extinguishment, and smoke and toxic gas formation".

For the range of conditions investigated, the ignition delay times exhibit an Arrhenius dependence on temperature and an inverse relationship with the compressed pressure.

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