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And it is important to provide some reliable methods, which can give reasonable analysis of the explosion.
A theoretical analysis of the explosion limits in the homogeneous H2/O2-system confirms that reactors with characteristic dimensions in the sub-millimetre range become intrinsically safe at ambient pressure conditions.
Also, an analysis of the explosion earthquakes uses a conduit radius of 10 m (Nishimura, 1998), but recent activities of Suwanose-jima are small, so we assume a conduit radius, a, of 5 m.
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In the present paper, the theoretical analysis of the thermal explosion critical conditions for solid state exothermic reactions was conducted.
To enforce the analysis of explosion mechanism, numerical computer simulation about the same experimental conditions was performed and the calculated overpressure waveform agreed well with those obtained in the present experiments.
Through this study, recommendations and guidelines of using finite element analysis for the design or analysis of such explosion resistant barriers are given.
Comparative analysis reveals that the explosion mechanism of carbonaceous dust is the volatile combustion, whereas the mechanism for light metal dust mainly features the surface heterogeneous oxidation.
Thus, we carried out explosion experiments of the object gases in semi-open space, and verified a numerical analysis code for the simulation of the explosion accident.
The experiments were carried out in a 20-L explosion vessel and the analysis of the results focuses on the maximum explosion pressures and the maximum rates of pressure rise as a function of carbon black and propane concentrations.
Analysis of the seismic data suggested that the explosion's yield was as high as 250 kilotons, almost 17 times that of the bomb dropped on Hiroshima, Japan, in 1945.
Despite these considerations, few studies have been devoted to the analysis of explosion properties at conditions of temperature and pressure different from ambient and in the presence of turbulence; therefore, experiments are still needed, even at lab-scale, e.g. for the design of mitigation system as venting devices.
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