Author:
Wang Xiaoqian,Yang Junlin,Li Donglai,Ye Hui,Ling Chen,Li Jingbo,Jin Haibo
Abstract
Smart radiation device (SRD) based on the asymmetrical Fabry-Perot cavity automatically tune its IR emittance depending on the ambient temperature, making it an ideal choice for thermal control system of spacecrafts. The low solar absorption is desirable for SRD to prevent the spacecraft from overheating by sun light. In this paper, a multilayer highly reflective film with LHk stacking layers is designed to reduce the solar absorptance (As) of the Ag/Al2O3/VO2 structured SRD. The reflective film achieves a high reflection band in ~220 nm bandwidth from 460 nm to 680 nm, which results in a reduction of the solar absorptance by 25.56 % for SRD working at low temperature and 24.27 % at high temperature as the stacking factor k= 5. The simulation results indicate that an economic reflective film with k= 3 can achieve effective suppression of As of SRD, demonstrating the promising potential of the proposed reflective film in thermal control application of spacecrafts.
Reference17 articles.
1. A. L. Alexander, “Thermal control in space vehicles,” Science, Vol. 143, No. 3607, pp. 654–660, Feb. 1964, https://doi.org/10.1126/science.143.3607.654
2. H. Jin, C. Ling, and L. I. Jingbo, “Development of variable-emittance thermal control technology,” Journal of Deep Space Exploration, 2018.
3. M. Benkahoul et al., “Thermochromic VO2 film deposited on Al with tunable thermal emissivity for space applications,” Solar Energy Materials and Solar Cells, Vol. 95, No. 12, pp. 3504–3508, Dec. 2011, https://doi.org/10.1016/j.solmat.2011.08.014
4. D. H. Ren and J. F. Tian, “Modeling and analysis of a MEMS-based thermal emissivity variable thermal control device,” in Applied Mechanics and Materials, Vol. 401-403, pp. 1686–1690, Sep. 2013, https://doi.org/10.4028/www.scientific.net/amm.401-403.1686
5. J. B. Goodenough, “2 components of crystallographic transition in VO2,” Journal of Solid State Chemistry, Vol. 3, No. 4, p. 490, 1971.
Cited by
5 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献