声音警报极限Tabaka——完全优化的冲击相互作用控制

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY
Zeliha Türkkahraman, Muhammed Enes Özcan, Buğrahan Alabaş
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引用次数: 0

摘要

在发展中国家,超音速飞行的重要性与日俱增,尤其是在军事领域。由于超音速飞行具有不同的物理条件,与亚音速飞机相比,机身结构和发动机部分都需要不同的设计。在这些研究中,研究了为超音速飞行设计的喷气发动机的进气道性能。为了实现低流量畸变和高压力恢复的目标,在进气口几何结构中增加了一个增压室。然后,应用两阶段优化过程获得了最佳的充气室几何设计。在每个优化步骤中,都进行了计算流体动力学分析,以确定增压室设计和放气系统的几何尺寸变化对PR(压力恢复)和FD(流量畸变)值的影响。分析结果表明,增压室和放气系统的加入提高了进气口的性能。优化过程中出现的新增压室设计对进气口的性能值产生了积极影响。分析结果表明,在优化的几何结构中,PR较高,FD较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ses Üstü Hava Alığında Sınır Tabaka – Şok Etkileşiminin Plenum Optimizasyonu ile Kontrolü
In the developing world, the importance of supersonic flights is increasing day by day, especially in military fields. Since supersonic flights have different physical conditions, different designs are required both in the fuselage structure and in the engine part compared to subsonic aircraft. In these studies, the air inlet performance of jet engines designed for supersonic flights is investigated. A plenum has been added to the air inlet geometry in line with the goal of low flow distortion and high pressure recovery. Then, the optimum plenum geometry design was obtained by applying a two-stage optimization process. In each optimization step, computational fluid dynamics analyses were performed to define the effects of the changes in the geometric dimensions of the plenum design and bleed system on the PR (Pressure Recovery) and FD (Flow Distortion) values. The outcome of the analysis showed that the addition of the plenum and the bleed system improved the performance of the air inlet. The new plenum design that emerged as a result of the optimization processes has positively affected the performance values of the air intake. Analysis results showed higher PR and lower FD results in optimized geometry.
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来源期刊
Journal of Polytechnic-Politeknik Dergisi
Journal of Polytechnic-Politeknik Dergisi ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
125
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