共 4 条
Novel Circular Arc Contour Design for Optimizing Rocket Nozzle Efficiency
被引:0
|作者:
Alili, Nabila
[1
]
Benouar, Ali
[2
]
Djeffal, Mohammed Amine
[3
]
Kaddouri, Khacem
[1
]
Salem, Mokadem
[1
]
机构:
[1] Univ Djillali Liabes Sidi Bel Abbes, Mech Engn Dept, Lab Phys Mech Mat LMPM, POB 89, Sidi Bel Abbes 22000, Algeria
[2] Higher Sch Elect & Energy Engn ESGEE, Lab complex Syst LCS, Oran, Algeria
[3] Univ Djillali Liabes Sidi Bel Abbes, Mech Engn Dept, Lab Mat & React Syst LMSR, POB 89, Sidi Bel Abbes 22000, Algeria
来源:
JOURNAL OF AERONAUTICS ASTRONAUTICS AND AVIATION
|
2024年
/
56卷
/
04期
关键词:
Supersonic nozzle;
Rocket nozzle contour;
Circular arc;
Thrust coefficient;
D O I:
10.6125/JoAAA.202409_56(4).02
中图分类号:
V [航空、航天];
学科分类号:
08 ;
0825 ;
摘要:
This research introduces a method for supersonic nozzle contour design utilizing arc, termed the "T-ARC" nozzle. Numerical investigations were conducted to explore the feasibility of arc-based contours in rocket nozzle design, comparing the T-ARC design to the conical nozzle "T-CON" in terms of performance. The nozzles were truncated to achieve optimal lengths, leading to notable weight and space savings in practical applications. Three key performance measures thrust, thrust coefficient, and specific impulse at the nozzle exit Mach number were considered for the comparative analysis. The study reveals that the T-ARC design outperforms the T-CON design, demonstrating a 4.93% increase in predicted Mach number, a 10.96% boost in specific impulse, a 10.62% rise in thrust coefficient, and a 10.95% increase in generated thrust. Despite the initial challenge posed by the T-ARC's length, truncation successfully addressed this issue without compromising performance. The study suggests that the arc-based approach offers a promising alternative for supersonic nozzle design, showcasing potential benefits in terms of size, efficiency, and stability. This research not only presents a novel nozzle design surpassing the performance of traditional models but also optimizes its length, resulting in a lighter and shorter nozzle with the potential for significantly improved engineering applications.
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页码:801 / 809
页数:9
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