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Scalability and dynamic stability of hybrid rocket engines

机译:混合火箭发动机的可扩展性和动态稳定性

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This paper is divided in two parts. The purpose of the first part is to tackle the problem of geometrical scalability of hybrid rocket engines while the second part of the paper the stability of hybrid rocket motor is investigated using Liapunov theory. Stability coefficients obtained are dependent on burning parameters while the stability and command matrixes are identified. Thus in the first part of this paper, authors present a method to tackle the issue of scalability in hybrid rocket engines. Experimental results on various hybrid rocket engines will be presented and compared with theoretical results obtained through an original internal combustion model. We derive the influence of hybrid rocket engine scale while keeping the same oxidizer and fuel and geometric similarity. The paper presents thoroughly the input data of the model, which allows reproducing easily the results obtained. The conclusions highlight the results obtained in chapter dedicated to analyze the results.
机译:本文分为两部分。第一部分的目的是解决混合动力火箭发动机的几何可扩展性问题,而第二部分则利用Liapunov理论研究混合动力火箭发动机的稳定性。获得的稳定性系数取决于燃烧参数,同时确定了稳定性和命令矩阵。因此,在本文的第一部分中,作者提出了一种解决混合动力火箭发动机可扩展性问题的方法。将介绍各种混合动力火箭发动机的实验结果,并将其与通过原始内燃模型获得的理论结果进行比较。我们推导了混合火箭发动机规模的影响,同时保持了相同的氧化剂和燃料以及几何相似性。本文全面介绍了模型的输入数据,从而可以轻松地再现所获得的结果。结论着重介绍了专门分析结果的章节中获得的结果。

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