Effects of Transversely Flame Jetting into Channel from Sub-chambers on Flame Accelerations and Detonation Transition Distances

Effects of Transversely Flame Jetting into Channel from Sub-chambers on Flame Accelerations and Detonation Transition Distances
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子室横向火焰喷射进入通道对火焰加速度和爆震过渡距离的影响

DOI:
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发表时间:
2015
期刊:
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影响因子:
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通讯作者:
Akinori
Akinori
中科院分区:
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文献类型:
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作者:
S. Maeda;Ryota;Tetsuro;Akinori

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Sub-chambers were used to initiate the detonation wave by injecting a flame-jet into the detonation tube. A configuration of the sub-chamber was divided into five types by changing the number of sub-chambers and the directions of flame injection. The detonation tube had a cross area of 50 × 50 mm, a length of 775 mm and equipped a window section for a visualization of the flowfield. The test gas was a stoichiometric premixed gas of hydrogen and oxygen and the initial pressure was constant as 80 kPa. The experimental results showed that the detonation transition distance was about 60% shorter than the case of spark ignition without flame-jet. Increasing the number of sub–chambers and colliding flame-jets emanating from counter positions resulted in decreasing the detonation transition distance. Schlieren photographs showed that the flame-jets promoted the formation of leading shock wave ahead of the turbulent flame in a short distance. Pressure measurements on the end wall of the detonation tube indicated that the shock or compression waves were reflected repeatedly in the cross-section, leading to a pressure wave and flame interaction. For the flame-jet initiation using the sub-chambers, generating turbulent flow in the premixed gas was of importance to promote the detonation transition.