Aerodynamic design, analysis, and validation techniques for the Tianwen-1 entry module

IF 2.7 1区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Qi Li, Wei Rao, Xiaoli Cheng, Haogong Wei, Chuang Wang, Jie Dong
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引用次数: 1

Abstract

The clear differences between the atmosphere of Mars and the Earth coupled with the lack of a domestic research basis were significant challenges for the aerodynamic prediction and verification of Tianwen-1. In addition, the Mars entry, descent, and landing (EDL) mission led to specific requirements for the accuracy of the aerodynamic deceleration performance, stability, aerothermal heating, and various complex aerodynamic coupling problems of the entry module. This study analyzes the key and difficult aerodynamic and aerothermodynamic problems related to the Mars EDL process. Then, the study process and results of the design and optimization of the entry module configuration are presented along with the calculations and experiments used to obtain the aerodynamic and aerothermodynamic characteristics in the Martian atmosphere. In addition, the simulation and verification of the low-frequency free oscillation characteristics under a large separation flow are described, and some special aerodynamic coupling problems such as the aeroelastic buffeting response of the trim tab are discussed. Finally, the atmospheric parameters and aerodynamic characteristics obtained from the flight data of the Tianwen-1 entry module are compared with the design data. The data obtained from the aerodynamic design, analysis, and verification of the Tianwen-1 entry module all meet the engineering requirements. In particular, the flight data results for the atmospheric parameters, trim angles of attack, and trim axial forces are within the envelopes of the prediction deviation zones.

天文一号进入模块的空气动力学设计、分析和验证技术
火星大气与地球大气的明显差异,加上国内研究基础的缺乏,对“天文一号”的气动预测与验证构成了重大挑战。此外,火星进入、下降和着陆(EDL)任务对进入模块的气动减速性能精度、稳定性、气动热加热以及各种复杂的气动耦合问题提出了具体要求。分析了与火星EDL过程相关的关键和难点气动和气动热力学问题。然后,介绍了登月舱结构设计与优化的研究过程和结果,并进行了火星大气中气动与气动特性的计算和实验。此外,还对大分离流下的低频自由振荡特性进行了仿真验证,并讨论了一些特殊的气动耦合问题,如饰板的气动弹性抖振响应。最后,将“天文一号”登月舱飞行数据所得的大气参数和气动特性与设计数据进行了比较。从“天文一号”进入模块的气动设计、分析和验证中获得的数据均满足工程要求。特别是,大气参数、纵倾攻角和纵倾轴向力的飞行数据结果都在预测偏差区范围内。
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来源期刊
Astrodynamics
Astrodynamics Engineering-Aerospace Engineering
CiteScore
6.90
自引率
34.40%
发文量
32
期刊介绍: Astrodynamics is a peer-reviewed international journal that is co-published by Tsinghua University Press and Springer. The high-quality peer-reviewed articles of original research, comprehensive review, mission accomplishments, and technical comments in all fields of astrodynamics will be given priorities for publication. In addition, related research in astronomy and astrophysics that takes advantages of the analytical and computational methods of astrodynamics is also welcome. Astrodynamics would like to invite all of the astrodynamics specialists to submit their research articles to this new journal. Currently, the scope of the journal includes, but is not limited to:Fundamental orbital dynamicsSpacecraft trajectory optimization and space mission designOrbit determination and prediction, autonomous orbital navigationSpacecraft attitude determination, control, and dynamicsGuidance and control of spacecraft and space robotsSpacecraft constellation design and formation flyingModelling, analysis, and optimization of innovative space systemsNovel concepts for space engineering and interdisciplinary applicationsThe effort of the Editorial Board will be ensuring the journal to publish novel researches that advance the field, and will provide authors with a productive, fair, and timely review experience. It is our sincere hope that all researchers in the field of astrodynamics will eagerly access this journal, Astrodynamics, as either authors or readers, making it an illustrious journal that will shape our future space explorations and discoveries.
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