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Effect of Energy of the Ignition Source on the Experimentally Determined Value of the Minimum Inerting Concentration of Halohydrocarbons

机译:点火源的能量对卤代烃最小惰性浓度实验确定值的影响

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摘要

Based on the test results obtained in a spherical pressure chamber,the inerting concentration of halohydrocarbons C2F4Br2,CFaBr,and C2FsH was experimentally determined in a stoichiometric methane-air mixture,depending on the ignition-source energy.A wire burnt by electric current or a pyrotechnical composition was used as an ignition source.The energy of ignition sources was varied within 2 to 420 J.To obtain the real value of the inerting concentration of halohydrocarbons,independent of the ignition source used,the energy of the latter should be higher than 100 J for C_2F_4Br_2 and C_2F_5H and 400 J for CF_3Br.Application of ignition sources with lower energy yields underrated results and is related to the growth of the minimum ignition energy with addition of halohydrocarbons rather than to inerting of the combustible mixture.
机译:根据在球形压力室中获得的测试结果,根据点燃源的能量,在化学计量的甲烷空气混合物中通过实验确定卤代烃C2F4Br2,CFaBr和C2FsH的惰性浓度。使用烟火成分作为点火源。点火源的能量在2至420 J之间变化。要获得卤代烃惰性浓度的真实值,与所使用的点火源无关,后者的能量应高于对于C_2F_4Br_2和C_2F_5H为100 J,对于CF_3Br为400J。使用较低能量的点火源会低估结果,并且与添加卤代烃时最小点火能量的增长有关,而不是与可燃混合物的惰性有关。

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