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- W2945898817 abstract "Abstract This article provides much‐needed analytical tools to reduce the experimental burden for determining the maximum pressure for flammable gas combustion, P max , and the deflagration index, K G , as a function of the gas concentration. Both of these parameters are important for risk assessment, process design, and design of preventive and mitigative safeguards. A very large experimental database for hydrogen/oxygen/nitrogen mixtures in a 20 L spherical vessel was used to validate the tools for P max and K G . The first tool considered was an equilibrium code to estimate the maximum combustion pressure, P max . The calculated equilibrium pressure agreed very well with the experimental pressures in a broad range around the stoichiometric concentration. An increasing difference occurred as the concentration approached the flammable limits. This result is consistent with homogeneous and complete combustion near the stoichiometric concentration and upward partial combustion near the flammable limits. The ratio of these two pressures is likely representative of the total volume combusted. The second tool was the application of a commercial computer program, TableCurve 2D, to fit experimental data for P max and K G . A set of simple empirical equations were identified to estimate P max and K G using just a few experimental data points. Methods of application are presented. Reliable experimental data is always preferred, but these tools should help reduce the experimental data burden." @default.
- W2945898817 created "2019-05-29" @default.
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- W2945898817 date "2019-05-22" @default.
- W2945898817 modified "2023-09-28" @default.
- W2945898817 title "Much‐needed tools to reduce the experimental burden for determining the gas flammability parameters, P max and K G" @default.
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- W2945898817 doi "https://doi.org/10.1002/prs.12061" @default.
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