利用燃烧室亥姆霍兹频率测量混合火箭发动机的回归速率

I. Matos, R. M. Silva, L. Pimont, P. Lacava
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引用次数: 0

摘要

混合火箭发动机(HRM)的低推力值是由于燃料和氧化剂难以快速混合的结果,其特点是燃料颗粒的低回归率。因此,在针对人力资源管理中这一缺陷的解决方案的研究中,测量这个参数是非常重要的。几项研究通过测量每次燃烧前后的燃料总质量,计算出随时间推移的平均回归率的可靠值。测量瞬时回归速率的一种方法是获取燃烧室的亥姆霍兹共振频率。本工作利用压电压力传感器在实验室规模的高密度聚乙烯(HDPE)和气体氧试验台中获得燃烧室的亥姆霍兹频率模式,并基于该频率与燃烧室体积的平方根成反比的原理。随着腔体体积的变化,得到了颗粒孔径的变化。综上所述,计算得到的端口直径变化与由运行过程中质量损失确定的平均回归率的相关性很好地吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MEASUREMENT OF THE REGRESSION RATE IN A HYBRID ROCKET MOTOR BY ACQUIRING THE HELMHOLTZ FREQUENCY IN THE COMBUSTION CHAMBER
Low thrust values obtained with a hybrid rocket motor (HRM) are a consequence of the difficulty in quickly mixing the fuel and oxidizer, which is characterized by a low regression rate of the fuel grain. Therefore, the measurement of this parameter is of great importance in studies that aim at solutions for this deficiency in HRM. Several studies calculate a reliable value of the average regression rate over time by measuring the total mass of fuel before and after each burn. A method to measure instantaneous regression rate is by acquiring the Helmholtz resonance frequency in the combustion chamber. This work uses a piezoelectric pressure transducer to obtain the Helmholtz frequency mode of the combustion chamber in a laboratory scale test bench with high-density polyethylene (HDPE) and gaseous oxygen, and is based on the principle that this frequency is inversely proportional to the square-root of the chamber volume. With the chamber volume variation, the port diameter of the grain variation is obtained. In conclusion, the calculated variation of port diameter agreed well with the correlation for average regression rate, determined from mass loss during operation.
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