点火系统
冲击管
材料科学
氢
振膜(声学)
冲击波
休克(循环)
管(容器)
机械
复合材料
化学
声学
热力学
物理
振动
内科学
有机化学
医学
作者
Wataru Kaneko,Kazuhiro Ishii
标识
DOI:10.1016/j.ijhydene.2016.04.211
摘要
Abstract In the present work, self-ignition of high-pressure hydrogen that is released to air through a ruptured diaphragm is studied experimentally under various test conditions. Diaphragms with several thicknesses and scores are ruptured by high-pressure hydrogen, and the formation of a shock wave in the tube is experimentally observed. The behavior of the ruptured diaphragm and the subsequent self-ignition is photographed using a high-speed camera, while the self-emission intensity from a flame is measured using a photomultiplier. The experimental results show that the diaphragm rupturing condition is one of the main factors affecting the self-ignition phenomena. In addition, the self-ignition causes a ring-shaped flame that travels downstream, along a boundary between the hydrogen jet and the shock-heated air.
科研通智能强力驱动
Strongly Powered by AbleSci AI