RESEARCH ON FOLDING AND INFLATION PROCESS OF THE DRAG BALLOON DEORBIT DEVICE

Ning Jiao, Keying Yang*, Jingrui Zhang

*此作品的通讯作者

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Drag balloon deorbit device faces problems such as low packaging density and membrane damage during folding, as well as oscillations caused by inappropriate mass rates. In this study, aimed at improving the folding efficiency of drag balloons and ensuring smooth deployment, we propose a new folding method that combines flat spiral bonding with Z-folding. LSDYNA is used to establish a simulation model, and the deployment process of this folding model is analyzed using the Corpuscular Method (CPM). Specifically, we explore the necessary conditions for the smooth inflation and deployment of a drag balloon from the perspectives of the number of valves and mass rate. The results demonstrate that the proposed folding method is a low-damage, high-density one. Increasing the number of valves reduces the oscillation amplitude during the deployment process, enabling the drag balloon to reach a stable state earlier. Increasing the mass rate accelerates the oscillation frequency during the deployment process, which in turn requires more time for the drag balloon to regain stability. Therefore, to ensure the smooth deployment of the drag balloon during inflation, methods such as increasing the number of valves and reducing the mass rate can be employed.

源语言英语
主期刊名AOPC 2023
主期刊副标题Laser Technology and Applications; and Optoelectronic Devices and Integration
编辑Pu Zhou, Jianguo Liu
出版商SPIE
ISBN(电子版)9781510672246
DOI
出版状态已出版 - 2023
活动2023 Applied Optics and Photonics China: Laser Technology and Applications; and Optoelectronic Devices and Integration, AOPC 2023 - Beijing, 中国
期限: 25 7月 202327 7月 2023

出版系列

姓名Proceedings of SPIE - The International Society for Optical Engineering
12959
ISSN(印刷版)0277-786X
ISSN(电子版)1996-756X

会议

会议2023 Applied Optics and Photonics China: Laser Technology and Applications; and Optoelectronic Devices and Integration, AOPC 2023
国家/地区中国
Beijing
时期25/07/2327/07/23

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