新一代空间飞行器中的液体推进剂荡浮特性及抑制方法

Q3 Earth and Planetary Sciences
Peng-fei Guo, Zi-an Wang, Rui Shi, Yang Yang, Hui-fang Huo, Chengxi Zhang
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引用次数: 0

摘要

鉴于新一代航天器复杂的飞行任务和异形贮箱的结构特点,本研究对液体推进剂的荡滑特性和抑制方法进行了研究。首先介绍了液体推进剂周期性荡浮的数值计算和结构抑制方法。随后,介绍并验证了一种基于流体体积法(VOF)的新型等效动态分析方法,用于模拟液体荡动并确定荡动质量、频率和阻尼比等动态特性参数。此外,还设计了用于抑制滑动的防滑动挡板,并研究了挡板高度对滑动频率和阻尼比的影响。这些重要发现为提高新一代航天器姿态控制系统的飞行稳定性和可靠性提供了重要的参考和依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Liquid propellant sloshing characteristics and suppression in new-generation space vehicle

Given the complex flight mission and structural characteristics of special-shaped tanks in new-generation space vehicles, this study investigates the sloshing characteristics and suppression methods of liquid propellant. Initially, the numerical calculation and structural suppression approaches for liquid propellant periodic sloshing are introduced. Subsequently, a new equivalent dynamic analysis approach based on the Volume of Fluid (VOF) method is presented and validated to simulate liquid sloshing and determine dynamic characteristic parameters such as sloshing mass, frequency, and damping ratio. Furthermore, anti-sloshing baffles are designed for sloshing suppression, and the influence of baffle height on sloshing frequency and damping ratio is examined. These significant findings provide crucial references and foundations for enhancing the flight stability and reliability of the attitude control system in new-generation space vehicles.

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来源期刊
Aerospace Systems
Aerospace Systems Social Sciences-Social Sciences (miscellaneous)
CiteScore
1.80
自引率
0.00%
发文量
53
期刊介绍: Aerospace Systems provides an international, peer-reviewed forum which focuses on system-level research and development regarding aeronautics and astronautics. The journal emphasizes the unique role and increasing importance of informatics on aerospace. It fills a gap in current publishing coverage from outer space vehicles to atmospheric vehicles by highlighting interdisciplinary science, technology and engineering. Potential topics include, but are not limited to: Trans-space vehicle systems design and integration Air vehicle systems Space vehicle systems Near-space vehicle systems Aerospace robotics and unmanned system Communication, navigation and surveillance Aerodynamics and aircraft design Dynamics and control Aerospace propulsion Avionics system Opto-electronic system Air traffic management Earth observation Deep space exploration Bionic micro-aircraft/spacecraft Intelligent sensing and Information fusion
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