喷嘴
机械
喷射(流体)
弹道
热的
动量(技术分析)
氢
材料科学
热力学
化学
物理
有机化学
财务
天文
经济
作者
Tomohiko Imamura,Shota Hamada,Tatsushi Mogi,Yuji Wada,S. Horiguchi,Akira Miyake,Terushige Ogawa
标识
DOI:10.1016/j.ijhydene.2008.03.063
摘要
A series of experiments were conducted to understand the thermal hazards of hydrogen jet flames. In particular, we focused on the temperature properties of hot currents in the downstream region, because it was expected that this involved the most serious thermal hazards. The flame length and width depended on the nozzle diameter and the spouting pressure, namely, the mass flow rate, with similar dependences that were reported by other researchers. The temperature rise from ambient air along the trajectory depended on the balance of the flame length and the traveling distance from the flame tip. The position of the trajectory depended not only on the balance of flame length and the traveling distance, but also on the horizontal momentum induced by the spouting pressure. Empirical formulae for predicting the position and temperature rise of the trajectory were developed by the flame length, traveling distance, spouting pressure, and nozzle diameter as variables.
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