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Experimental investigation an the detonability of non-uniform gaseous mixtures

机译:实验研究非均匀气态混合物的爆炸性

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An experimental investigation is performed to characterize the detonability of small gaseous clouds with a concentration gradient. Two types of gaseous mixtures are used: (i) a heavy gas C3H8/O-2 (equivalence ratio phi: 0.70 less than or equal to phi less than or equal to 1.66); (ii) a light gas H-2/O-2 (0.50 less than or equal to phi less than or equal to 1.25). The mixtures are initially confined in a hemispherical volume which is characterized by an initial radius R-0 = 0.04 divided by 0.08 m. When the confining is ruptured, the gaseous mixture diffuses into the surrounding air. The concentration distribution is a result of molecular diffusion, gravity and turbulence. Schlieren chronophotographies enable the illustration of the dispersion of the cloud. By means of pressure profiles of blast waves generated by the explosion, the limit between the two explosion phenomena (total and partial explosive charge) is defined. The limit time delay, which leads to a given concentration distribution and for which detonations cannot be observed, is investigated with respect to initial gaseous composition and initial volume of confining. The critical nominal initiation energies in uniform and non-uniform media are characterized. [References: 22]
机译:进行实验研究以表征具有浓度梯度的小气态云的爆炸性。使用两种类型的气体混合物:(i)重气C3H8 / O-2(当量比phi:0.70小于或等于phi小于或等于1.66); (ii)轻气H-2 / O-2(0.50小于或等于phi小于或等于1.25)。最初将混合物限制在半球形体积中,该半球形体积的特征在于初始半径R-0 = 0.04除以0.08 m。当封闭破裂时,气态混合物扩散到周围的空气中。浓度分布是分子扩散,重力和湍流的结果。 Schlieren年代摄影技术可以说明云的扩散。通过爆炸产生的爆炸波的压力曲线,确定两种爆炸现象(全部和部分爆炸装药)之间的界限。关于初始气态成分和初始密闭空间,研究了导致给定浓度分布且无法观察到爆炸的极限时间延迟。表征了均匀和非均匀介质中的临界标称起始能量。 [参考:22]

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