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Solid Propellant Burning Rate From Strand Burner Pressure Measurement

机译:链式燃烧器压力测量得出的固体推进剂燃烧速率

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摘要

Strand burner pressure-time data are analyzed to determine if the propellant burning rate can be extracted.This approach is based on strand burner pressure-time history that is related to the temperature change due to exothermic reaction heating of chamber gases and gas addition to the chamber by propellant combustion products.In support of this method,chemical equilibrium calculations were made to project product composition,internal energy,and other needed properties.A mathematical model was formulated and solved numerically and the calculated burning rates were compared with the experimental wire-break time results provided simultaneously and with the propellant manufacturer's results,when available.The comparisons reveal that the approach has merit and that more accurate pressure determination coupled with additional thermochemical information and strand burner gas temperature measurements has the potential to make this approach a viable technique and one that can be applied in conjunction with other burning rate measurements.The proposed method is similar to a well-developed technique which is commonly applied to ballistic powders but with adjustments for the differences in geometry,pressure,and time of event.
机译:分析束流燃烧器压力-时间数据以确定是否可以提取推进剂燃烧率。此方法基于束流燃烧器压力-时间历史,该历史与温度变化有关,该温度变化是由于燃烧室气体放热反应加热和向燃烧室中添加气体引起的。为了支持这种方法,进行了化学平衡计算,以预测产品的组成,内部能量和其他所需的特性。建立了数学模型并对其进行了数值求解,并将计算出的燃烧速率与实验金属丝进行了比较。比较结果表明,该方法具有优点,并且与推进剂制造商的结果同时提供。比较结果表明该方法具有优点,更准确的压力确定以及其他热化学信息和炉膛燃烧器气体温度测量值有可能使该方法成为可行的技术并且可以在con所提出的方法类似于一种发达的技术,该技术通常应用于弹道粉,但需要对几何形状,压力和事件时间的差异进行调整。

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