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首页> 外文期刊>Russian journal of physical chemistry, B. >Combustion and explosion of hydrogen-air mixtures under conditions imitating elements of gas-laden rooms
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Combustion and explosion of hydrogen-air mixtures under conditions imitating elements of gas-laden rooms

机译:氢气混合气在模拟载气室元素的条件下燃烧和爆炸

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摘要

The time evolution of the processes of combustion and explosion with regard to safety problems in handling reactive gas mixtures was studied. The explosion safety for reaction volumes and gas-laden rooms can be assessed only if data on the possible consequences of the emergencies under conditions close to real ones or modeling them are available. The propagation of nonplanar explosion waves with a short positive phase in volumes with variable cross section is an essentially unsteady process. Until recently, the regularities of the evolution of the characteristics of such waves during their propagation in a reactive mixture with heat release virtually have not been studied. At the same time, these processes determine the character of combustion, and, therefore, the possibility of their formalization provides the opportunity to treat the entire variety of combustion regimes. Only a knowledge of general laws of the interaction of unsteady gasdynamic processes and gaskinetic processes in a reactive medium makes it possible to control combustion regimes purposefully and effectively. The present work is devoted to studying the propagation of combustion in cavities with a geometry imitating elements of reaction volumes and rooms filled with a hydrogen-air mixture. Results for a pyramid-shaped cavity capable of cumulating flows and waves are considered and compared to those obtained using a conical cavity [1-5].
机译:研究了燃烧和爆炸过程在处理反应性气体混合物中的安全性问题的时间演变。只有在接近实际情况或对其建模的情况下,才有可能评估反应堆和含气室的爆炸安全性。具有短正相位的非平面爆炸波在具有可变横截面的体积中的传播基本上是不稳定的过程。直到最近,实际上还没有研究过这种波在具有热释放的反应性混合物中传播过程中特性的演变规律。同时,这些过程决定了燃烧的特性,因此,将它们形式化的可能性提供了处理各种燃烧方案的机会。只有了解反应性介质中不稳定气体动力学过程和气体动力学过程相互作用的一般规律,才有可能有目的地有效地控制燃烧状态。本工作致力于通过模拟反应空间和充满氢气-空气混合物的房间的几何形状来研究空腔中燃烧的传播。考虑了能够累积流量和波浪的金字塔形腔体的结果,并将其与使用圆锥形腔体获得的结果进行比较[1-5]。

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