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IGNITION AND COMBUSTION OF PYROTECHNICS AT LOW PRESSURES AND AT TEMPERATURE EXTREMES

机译:在低压和温度下烟火的点火和燃烧燃烧

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Rapid and effective ignition of pyrotechnic countermeasure decoy flares is vitallyimportant to the safety of expensive military platforms such as aircraft. QinetiQ isconducting experimental and theoretical research into pyrotechnic countermeasuredecoy flares. A key part of this work is the development and application ofimproved models to increase the understanding of the ignition processes occurringfor these flares. These models have been implemented in a two-dimensionalcomputational model and details are described in this paper. Previous work hasconducted experiments and validated the computational model at ambienttemperature and pressure. More recently the computational model has beenvalidated at pressures down to that equivalent to 40,000 feet but at ambienttemperature (~290K). This paper describes further experimental work in which theignition delays of the priming material in inert countermeasure decoy flares weredetermined for pressures down to 40,000 feet and at temperature extremes of -40°C and 100°C. Also included in this paper is a comparison of the measured andpredicted ignition delays at low pressures and temperature extremes. Theagreement between the predicted and measured ignition delays is acceptable. Thispaper is an extended abstract – the full paper appears in Defence Technology,Volume 13, Number 3.
机译:烟火对策诱饵燃烧的快速有效点火是最大的对飞机等昂贵的军用平台的安全性很重要。 Qinetiq是对烟火对策进行实验和理论研究诱饵耀斑。这项工作的一个关键部分是开发和应用改进的模型,以提高发生点火过程的理解对于这些耀斑。这些模型已在二维中实现本文描述了计算模型和细节。以前的工作有进行实验并在环境中验证了计算模型温度和压力。最近,计算模型已经存在在压力下验证到相当于40,000英尺但在环境中温度(〜290k)。本文介绍了进一步的实验工作惰性对抗诱饵喇叭口引发材料的点火延迟是确定压力下降到40,000英尺和极端温度 - 40°C和100°C。本文还包括:测量和测量的比较在低压和温度极值下预测点火延迟。这预测和测量点火延迟之间的协议是可以接受的。这个纸是一个扩展的抽象 - 全文出现在防御技术中,第13卷,第3号。

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