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Dark zones of solid propellant flames: Critically assessed datasets, quantitative model comparison, and detailed chemical analysis

机译:固体推进剂火焰的暗区:严格评估的数据集,定量模型比较和详细的化学分析

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The formation of propellant dark zone (DZ) structures in the gaseous flames above many solid propellants has been a subject of recurrent interest to us for about 20 years. The DZ structure is controlled by small mol?ecule chemistry. The DZ chemistry is very important in controlling both the flame structure at low pressure (10-100 atm) and burning rates at high pressure (above ~500 atm), even though DZs collapse at higher pressures. We developed a detailed, frequently updated mechanism to model it. This report reviews prior work, introduces our most recent modeling results, and documents the first quantitative tests of several key assumptions. All relevant experimental literature is critically assessed to identify datasets for testing our model. Comparison of predictions and experimental results shows reasonable agreement, and thus we advocate use of our mechanism. But the precision of both experiments and predictions is not tight, nor are there many test datasets. Further experimentation is needed, and types of study that would be of greatest benefit are suggested. A detailed discussion of the chemistry that controls DZ structure is presented. Published by Elsevier Inc. on behalf of The Combustion Institute.
机译:在许多固体推进剂上方的气态火焰中形成推进剂暗区(DZ)结构一直是我们20年来经常关注的话题。 DZ结构由小分子化学控制。 DZ化学物质在控制低压(10-100 atm)的火焰结构和高压(〜500 atm以上)的燃烧速率方面都非常重要,即使DZ在更高的压力下也会崩溃。我们开发了详细的,经常更新的机制来对其进行建模。本报告回顾了以前的工作,介绍了我们最新的建模结果,并记录了对几个关键假设的首次定量测试。所有相关的实验文献都经过严格评估,以确定用于测试模型的数据集。预测和实验结果的比较表明合理的一致性,因此我们提倡使用我们的机制。但是实验和预测的精度都不严格,测试数据集也不多。需要进一步的实验,并建议最大程度的研究类型。提出了控制DZ结构的化学方法的详细讨论。由Elsevier Inc.代表燃烧研究所出版。

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