首页> 外文期刊>Combustion Science and Technology >DETONATION OF HYDROGEN IN A PARTIALLY FILLED INTERCONNECTING VESSEL FOLLOWING AN INITIAL PERIOD OF PRESSURE PILING
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DETONATION OF HYDROGEN IN A PARTIALLY FILLED INTERCONNECTING VESSEL FOLLOWING AN INITIAL PERIOD OF PRESSURE PILING

机译:在压力桩的初始时间段内,部分填充的互连容器中的氢爆轰

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Partially filled interconnected vessels are investigated using hydrogen-air mixtures in the lean flammable range. Homogeneous hydrogen-air mixtures (10-22% by volume) were prepared in a 100 L cylindrical vessel which was connected to a larger (400 L) vessel (containing air) through a 1 m connecting pipe. The mixture was ignited at the flange, directly opposite the connecting pipe. For concentrations between 12 and 16% pressure piling was displayed in the 400 L vessel. For concentrations between 18 and 22% an additional detonation event in the primary vessel was observed, demonstrating the potentially severe consequences of hydrogen leakage and ignition in an enclosed interconnected geometry. The cause of this deflagration to detonation transition (DDT) is unclear and is divorced from the flame propagation in the duct (attributed as the origin of DDT in similar systems by other workers). In the present research, the DDT appears similar to the "engine knock" effect or hot spot initiation of autoignition/detonation.
机译:使用稀薄易燃范围内的氢气-空气混合物对部分填充的互连容器进行了研究。在100 L的圆柱形容器中制备均相的氢气-空气混合物(按体积计10-22%),该容器通过1 m的连接管与较大的(400 L)容器(包含空气)连接。混合物在法兰正对着连接管的地方点燃。对于浓度在12%至16%之间的压力,在400 L容器中显示出压力堆积。当浓度在18%到22%之间时,在主容器中还观察到另外的爆炸事件,这表明在封闭的相互连接的几何结构中氢泄漏和着火的潜在严重后果。爆燃到爆轰过渡(DDT)的原因尚不清楚,并且与管道中的火焰传播相分离(归因于其他工人在类似系统中DDT的起源)。在目前的研究中,滴滴涕似乎类似于“发动机爆震”效应或自燃/引爆的热点启动。

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