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Since auto ignition of a homogeneous mixture is very sensitive to operating condition a fast combustion timing control is necessary for reliable operation, the ignition timing control design requiring appropriate models and system output variables for its feedback design.
Like its δ-BaCO3 analogue, which is known to be stabilized by the incorporation of SO4− anions [46] or by an abrupt temperature change [45], it is likely that the new metastable δ-Ba0.5Sr0.5CO3 phase was formed at the beginning of the combustion process due to the fast combustion.
Currently, Al/Ni nano-multilayers are widely regarded as a type of promising nano-energetic material to integrate with MEMS for extremely high heating rates (105 106 K/S), fast combustion propagation velocities up to 10 m/s, and low onset reaction temperature (400 500 K) [19 22].
A common technique in computational fluid dynamics (CFD) modeling of fire is to assume single step, infinitely fast combustion, in which case the transport equations of all gas species can be combined into one for a single conserved scalar called the mixture fraction.
It is shown that the mechanism of the plasma expansion strongly depends on the pressure of the gaseous medium: it varies from the light detonation regime of fast combustion at low pressures; to the slow combustion in the form of the subsonic radiative wave at high pressures.
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It was found that the faster evaporation does not necessarily lead to faster combustion.
This makes biomass a highly reactive fuel giving a faster combustion rate during the devolatisation phase than other fuels such as coal [15].
Upon ignition, the EPD films resulted in a smoother and faster combustion event compared to the DC films.
The N. oculata biomass, which had high volatile matter and low fixed carbon contents, was highly reactive fuel and would give a faster combustion rate during the devolatilization phase.
There is contradictory literature about whether faster combustion may increase or decrease the likelihood of knock in spark ignition (SI) engines.
H2/CO/CH4 syngases ranging from 0%to100%0% and synthetic natural gases containing H2 from 0%to30%0% were tested and analyzed in view of H2, which has distinctive combustion characteristics of fast burning and high flame temperature.
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