Properties of Nine Gas Giant Planets and their Possible Formation

Research Article
Open access

Properties of Nine Gas Giant Planets and their Possible Formation

Yinqi Chen 1*
  • 1 Shenzhen College of International Education    
  • *corresponding author 1811000806@mail.sit.edu.cn
Published on 17 November 2023 | https://doi.org/10.54254/2753-8818/10/20230328
TNS Vol.10
ISSN (Print): 2753-8826
ISSN (Online): 2753-8818
ISBN (Print): 978-1-83558-131-5
ISBN (Online): 978-1-83558-132-2

Abstract

This conference paper examines the properties and formation of several exoplanets and gas giants in our solar system. Specifically, this paper focus on HD 80606 b, WASP-14 b, HD 189733b, Saturn, HAT-P-26b, Jupiter, HR 8799 b, HR 8799 c, and HD 149026b. The paper will display 5 theories of formation of gas giants and the physical characteristics of the 9 gas giants, such as mass, radius, and temperature, as well as their atmospheric composition. Additionally, this paper will make analysis to explore the possible path of formation of these planets, using their formation mechanism, location in their respective systems, and the potential influence of their host star. Through this analysis, the paper aims to deepen our understanding of the diversity of exoplanets and the factors that shape their formation and evolution.

Keywords:

HD 80606 b, WASP-14 b, HD 149026b, giant planet, formation mechanism

Chen,Y. (2023). Properties of Nine Gas Giant Planets and their Possible Formation. Theoretical and Natural Science,10,130-136.
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References

[1]. Liu Hu. Overall aircraft design [M]. Beijing: Beijing Aerospace University Press, 2019. [American] by Lehman, DP. Modern aircraft design [M].

[2]. Zhong Dingkui et al. Beijing: National Defense Industry Press, 1992.

[3]. Wu Zi-cow. Aerodynamics [M]. Beijing: Tsinghua University Press, 2007.

[4]. Serve the people peacefully. Analysis and calculation of aircraft [M]. Xi'an: Northwestern Polytechnical University Press, 2012.

[5]. Xing Lin Linlin. flight theory [M]. Beijing: Beijing Aerospace University Press, 2018.

[6]. Fang Baorui. Pneumatic layout design of the aircraft [M]. Beijing: Aviation Industry Press, 1997.

[7]. Min Shan Mountain. Pneumatic layout design and analysis of a certain type of tailless flying wing UAV [D]. Wuhan: Huazhong University of Science and Technology, 2015.

[8]. Guo Kezhi. The conceptual design and aerodynamic optimization of the high-altitude and long-endurance UAV series [D]. Nanjing: Nanjing University of Aeronautics and Astronautics, 2008.

[9]. Qin Bo, Wang Lei. Review of UAV development [J]. Flying missile, 2002.

[10]. Wu Xiaochun. UAVs first came out [J]. Aviation Knowledge, 2001.

[11]. Zhang Dong, Chen Yong, Hu Mengquan, et al. Effect of edge canard on aerodynamic characteristics of swept and swept wings. Journal of Beijing University of Aeronautics and Astronautics, 2019,45 (10): 2058-2068.

[12]. Feng Cong,Chen Shu-sheng,Yuan Wu,Li Zheng,Gao Zheng-hong. A wide-speed-range aerodynamic configuration by adopting wave-riding-strake wing [J]. Acta Astronautica, 2023, 202.


Cite this article

Chen,Y. (2023). Properties of Nine Gas Giant Planets and their Possible Formation. Theoretical and Natural Science,10,130-136.

Data availability

The datasets used and/or analyzed during the current study will be available from the authors upon reasonable request.

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About volume

Volume title: Proceedings of the 2023 International Conference on Mathematical Physics and Computational Simulation

ISBN:978-1-83558-131-5(Print) / 978-1-83558-132-2(Online)
Editor:Roman Bauer
Conference website: https://www.confmpcs.org/
Conference date: 12 August 2023
Series: Theoretical and Natural Science
Volume number: Vol.10
ISSN:2753-8818(Print) / 2753-8826(Online)

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References

[1]. Liu Hu. Overall aircraft design [M]. Beijing: Beijing Aerospace University Press, 2019. [American] by Lehman, DP. Modern aircraft design [M].

[2]. Zhong Dingkui et al. Beijing: National Defense Industry Press, 1992.

[3]. Wu Zi-cow. Aerodynamics [M]. Beijing: Tsinghua University Press, 2007.

[4]. Serve the people peacefully. Analysis and calculation of aircraft [M]. Xi'an: Northwestern Polytechnical University Press, 2012.

[5]. Xing Lin Linlin. flight theory [M]. Beijing: Beijing Aerospace University Press, 2018.

[6]. Fang Baorui. Pneumatic layout design of the aircraft [M]. Beijing: Aviation Industry Press, 1997.

[7]. Min Shan Mountain. Pneumatic layout design and analysis of a certain type of tailless flying wing UAV [D]. Wuhan: Huazhong University of Science and Technology, 2015.

[8]. Guo Kezhi. The conceptual design and aerodynamic optimization of the high-altitude and long-endurance UAV series [D]. Nanjing: Nanjing University of Aeronautics and Astronautics, 2008.

[9]. Qin Bo, Wang Lei. Review of UAV development [J]. Flying missile, 2002.

[10]. Wu Xiaochun. UAVs first came out [J]. Aviation Knowledge, 2001.

[11]. Zhang Dong, Chen Yong, Hu Mengquan, et al. Effect of edge canard on aerodynamic characteristics of swept and swept wings. Journal of Beijing University of Aeronautics and Astronautics, 2019,45 (10): 2058-2068.

[12]. Feng Cong,Chen Shu-sheng,Yuan Wu,Li Zheng,Gao Zheng-hong. A wide-speed-range aerodynamic configuration by adopting wave-riding-strake wing [J]. Acta Astronautica, 2023, 202.