Analytical investigation of surface temperatures for different sized CubeSats at varying Low Earth Orbits

IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Journal of Thermal Science and Engineering Applications Pub Date : 2023-04-21 DOI:10.1115/1.4062401
C. Atar, M. Aktaş, N. Sözbir, M. Bulut
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Abstract

Thermal management is a challenging engineering problem for CubeSats due to the limited available volumes restricting the thermal control applications. Therefore, performing thermal modelling and analyses of these small satellites is very crucial for applying proper thermal control measures to maintain safe operating conditions in space. Despite the growing interest in this field, there are still a limited number of studies investigating thermal behavior of CubeSats. In this paper, surface temperature profiles of 1U, 2U, 3U, 5U, 6U and 12U sized CubeSats are simulated for varying low earth orbits. The effects of altitudes changing between 400 km to 2000 km and the beta angles changing between 0 to 75 degrees are analytically investigated. Not only the coatings with different absorptance and emissivity values but also different amounts of internal heat dissipations are examined to reveal their impact on thermal balance of satellites. Results demonstrate surface temperatures are highly depended on those variables. The amount of heat absorbed by satellite panels are affected by different sizes of CubeSats, different coating properties of panels and different orbital configurations. The outcomes of this research may be beneficial especially in the early design phase for designing of small satellites and selecting proper orbital configurations.
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不同近地轨道上不同尺寸立方体卫星表面温度的分析研究
热管理是立方体卫星的一个具有挑战性的工程问题,因为有限的可用体积限制了热控制的应用。因此,对这些小卫星进行热建模和分析对于采取适当的热控制措施以保持空间安全运行条件至关重要。尽管人们对这一领域的兴趣日益浓厚,但关于立方体卫星热行为的研究仍然有限。本文模拟了1U、2U、3U、5U、6U和12U尺寸的立方体卫星在不同近地轨道上的地表温度分布。分析了海拔高度在400 ~ 2000 km之间变化和角在0 ~ 75°之间变化的影响。研究了不同吸收率和发射率的涂层以及不同的内部散热量对卫星热平衡的影响。结果表明,地表温度高度依赖于这些变量。不同的立方体卫星尺寸、不同的卫星板涂层性能和不同的轨道构型会影响卫星板的吸热量。本文的研究成果对小卫星的早期设计和轨道构型的选择具有一定的指导意义。
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来源期刊
Journal of Thermal Science and Engineering Applications
Journal of Thermal Science and Engineering Applications THERMODYNAMICSENGINEERING, MECHANICAL -ENGINEERING, MECHANICAL
CiteScore
3.60
自引率
9.50%
发文量
120
期刊介绍: Applications in: Aerospace systems; Gas turbines; Biotechnology; Defense systems; Electronic and photonic equipment; Energy systems; Manufacturing; Refrigeration and air conditioning; Homeland security systems; Micro- and nanoscale devices; Petrochemical processing; Medical systems; Energy efficiency; Sustainability; Solar systems; Combustion systems
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