A statistical method of assessing the safety of gaps between flanges of flameproof electrical apparatus

C. Bruce, N. L. Johnson
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引用次数: 1

Abstract

The paper gives the results of the authors' statistical analysis of tests made by the Safety in Mines Research Board (S.M.R.B.) to establish conditions of flameproofness of flange gaps for electrical gear for use in hazardous atmospheres. The chance of occurrence of an ignition of an external explosive atmosphere when an explosion occurs inside the flanged vessel, is found to increase approximately linearly with the size of the gap at the flanges. From a study of this variation of chance of ignition with flange gap, it has been possible to determine a gap which is safe within a certain approximately known risk, both for the case of a linear increase of chance with gap, and for the more accurate empirical law of variation of chance with gap deduced from the experimental data. Thus values of the statistical maximum safe gap are given for a number of hazardous atmospheres; these are such that, so far as can be determined, there is only a chance of the order of 1 in 1012 that the true maximum safe gap is actually less than the value given. These data afforded a basis for the determination of the maximum permissible gaps given in B.S. 229: 1946.
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隔爆电气设备法兰间隙安全性评定的统计方法
本文给出了作者对矿山安全研究委员会(S.M.R.B.)为确定危险环境用电气设备法兰间隙隔爆条件所做的试验进行统计分析的结果。当有法兰的容器内部发生爆炸时,发生外部爆炸性气体点火的机会,发现随着法兰间隙的大小近似线性地增加。从对点火机会随法兰间隙变化的研究中,可以确定在一定近似已知的危险范围内的安全间隙,无论是在机会随间隙线性增加的情况下,还是从实验数据中推导出的更精确的机会随间隙变化的经验规律。因此,对若干危险环境给出了统计上的最大安全间隙值;它们是这样的,就可以确定的而言,真正的最大安全间隙实际上小于给定值的概率只有1 / 1012。这些数据为B.S. 229: 1946中给出的最大允许间隙的确定提供了基础。
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