超音速飞行计划STAJe - 1有效载荷设计和系统研究

IF 1.3 4区 工程技术 Q2 ENGINEERING, AEROSPACE Journal of Spacecraft and Rockets Pub Date : 2023-09-03 DOI:10.2514/1.a35544
Jens Kunze, Sampada Vijay Shelar, Allan Paull
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引用次数: 0

摘要

[公式:见正文]飞行计划是基于大学的超音速和高超音速飞行试验计划的最新实施。在本研究的第一次飞行中,重点是评估商用现成电子硬件、额外制造的内部有效载荷结构和远程通信技术在高超音速马赫数飞行带来的挑战性环境中的适用性。这些项目可以显著降低飞行实验的成本,从而降低飞行实验阈值。这次飞行的科学目标是收集整个轨道上的压力和温度数据,与数值模型进行比较,光学测量安装在有效载荷上的复合材料翼片的温度,并将飞行模块从火箭组件中弹射出来,跟踪其位置,以备后续回收。跟踪系统的设计计算与地面试验的实验结果一起展示,证明了该系统的适用性。此外,还对轨迹上的外壁温度进行了一维计算,表明内部系统受到了足够的保护,免受恶劣环境的影响。尽管这些材料被证明适合飞行,但将在有效载荷的部分添加一层软木,以进一步降低结构失效的可能性。此外,研究表明,气动弹射系统适用于克服火箭前部的阻力,以启动分离。
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STAJe−: A Supersonic Flight Program STAJe− 1 Payload Design and System Study
The [Formula: see text] flight program is the latest implementation of a university-based supersonic and hypersonic flight-test program. In the first flight, which is the subject of this study, the focus is on evaluating the suitability of commercial off-the-shelf electronic hardware, additively manufactured internal payload structures, and a long-range communications technique in the challenging environment presented by flight at high supersonic Mach numbers. These items can significantly reduce the cost of a flight experiment, and thus lower the threshold for flight experimentation. The scientific objectives of this flight are to collect pressure and temperature data on the whole trajectory to compare to numerical models, to optically measure the temperature of composite fins mounted on the payload, and to eject the flight module from the rocket assembly and track its location for subsequent recovery. Design calculations for the tracking system are presented alongside experimental results from ground tests demonstrating the suitability of the system. Furthermore, a one-dimensional calculation of the external wall temperatures over the trajectory is presented, which shows that internal systems are sufficiently protected from the harsh environment. Although the materials are shown to be appropriate for the flight, a layer of cork will be added to parts of the payload to further reduce the chance of structural failure. In addition, it is shown that a pneumatic ejection system is suited to overcoming the drag forces on the front of the rocket to initiate separation.
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来源期刊
Journal of Spacecraft and Rockets
Journal of Spacecraft and Rockets 工程技术-工程:宇航
CiteScore
3.60
自引率
18.80%
发文量
185
审稿时长
4.5 months
期刊介绍: This Journal, that started it all back in 1963, is devoted to the advancement of the science and technology of astronautics and aeronautics through the dissemination of original archival research papers disclosing new theoretical developments and/or experimental result. The topics include aeroacoustics, aerodynamics, combustion, fundamentals of propulsion, fluid mechanics and reacting flows, fundamental aspects of the aerospace environment, hydrodynamics, lasers and associated phenomena, plasmas, research instrumentation and facilities, structural mechanics and materials, optimization, and thermomechanics and thermochemistry. Papers also are sought which review in an intensive manner the results of recent research developments on any of the topics listed above.
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