Influence of Temperature and Frequency on Microwave Dielectric Properties of Lunar Regolith Simulant

被引:0
作者
EDWARD Matthew Osei Jnr
机构
[1] DepartmentofGeomaticEngineering,KwameNkrumahUniversityofScienceandTechnology
关键词
lunar regolith simulant; dielectric constant; temperature; frequency;
D O I
暂无
中图分类号
P184.5 [月球表面物理及观测方法];
学科分类号
070401 ;
摘要
The dielectric constant of the lunar regolith can directly influence the reflection coefficient and the trans-mission coefficient of the Moon′s surface, and plays an important role in the Moon research. In order to study the di-electric properties of the lunar regolith, the lunar regolith simulant was made according to the making procedure of the CAS-1 simulant made by Chinese Academy of Sciences. Then the dielectric constants of the lunar regolith simulant were measured with 85070E Aiglent Microwave Network Analyzer in the frequency ranging from 0.2 GHz to 20.0 GHz and at temperature of 25.1℃, 17.7℃, 13.1℃, 11.5℃, 9.6℃, 8.0℃, 4.1℃, -0.3℃, -4.7℃, -9.5℃, -18.7℃, -27.7℃, and -32.6℃, respectively. The Odelevsky model was employed to remove the influence of water in the air on the final effective dielectric constants. The results indicate that frequency and temperature have apparent influences on the dielectric constants of the lunar regolith simulant. The real parts of the dielectric constants increase fast over the range of 0.2 GHz to 3.0 GHz, but decrease slowly over the range of 4.0 GHz to 20.0 GHz. The opposite phenomenon occurs in the imaginary parts. The influences of the frequency and temperature on the brightness temperature were also estimated based on the radiative transfer equation. The result shows that the variation of the frequency and temperature results in great changes of the microwave brightness temperature emitting from the lunar regolith.
引用
收藏
页码:94 / 101
页数:8
相关论文
共 50 条
[31]   Mechanical characteristics of a lunar regolith simulant at low confining pressure [J].
Yu Huang ;
Hu Zheng .
Environmental Earth Sciences, 2014, 71 :3697-3703
[32]   Physical, mechanical and thermal properties of vacuum sintered HUST-1 lunar regolith simulant [J].
Han, Wenbin ;
Zhou, Yan ;
Cai, Lixiong ;
Zhou, Cheng ;
Ding, Lieyun .
INTERNATIONAL JOURNAL OF MINING SCIENCE AND TECHNOLOGY, 2024, 34 (09) :1243-1257
[33]   Microstructure, thermophysical, and mechanical properties of bulk glass prepared from molten lunar regolith simulant [J].
Zheng, Wei ;
Qiao, Guofu .
ADVANCES IN SPACE RESEARCH, 2022, 69 (08) :3130-3139
[34]   Preparation and evaluation of geopolymer based on BH-2 lunar regolith simulant under lunar surface temperature and vacuum condition [J].
Zhou, Siqi ;
Yang, Zhanning ;
Zhang, Rongrong ;
Zhu, Xingyi ;
Li, Feng .
ACTA ASTRONAUTICA, 2021, 189 :90-98
[35]   The effect of particle size distribution on lunar regolith simulant angle of repose [J].
Easter, Parks ;
Long-Fox, Jared ;
Britt, Daniel ;
Brisset, Julie .
ADVANCES IN SPACE RESEARCH, 2024, 74 (07) :3437-3447
[36]   Material aspects of sintering of EAC-1A lunar regolith simulant [J].
Gines-Palomares, Juan-Carlos ;
Fateri, Miranda ;
Schubert, Tim ;
de Peindray d'Ambelle, Lilou ;
Simon, Sebastian ;
Gluth, Gregor J. G. ;
Guenster, Jens ;
Zocca, Andrea .
SCIENTIFIC REPORTS, 2023, 13 (01)
[37]   Preparation and characterization of highland lunar regolith simulant NEU-2 [J].
Zhang, Jie ;
Li, Detian ;
Xie, Kaiyu ;
He, Chengdan ;
Li, Jingyu ;
Wang, Jin ;
Li, Chengfang ;
Wang, Yongjun ;
Jiang, Yanying ;
Liu, Aimin ;
Shi, Zhongning .
ADVANCES IN SPACE RESEARCH, 2025, 76 (03) :1782-1794
[38]   The mechanical and structural properties of lunar regolith simulant based geopolymer under extreme temperature environment on the moon through experimental and simulation methods [J].
Xiong, Guiyan ;
Guo, Xiaolu ;
Yuan, Shuting ;
Xia, Ming ;
Wang, Zhihao .
CONSTRUCTION AND BUILDING MATERIALS, 2022, 325
[39]   Characterization, mechanical properties, and microstructural development of lunar regolith simulant-portland cement blended mixtures [J].
Neves, Juliana Moraes ;
Ramanathan, Sivakumar ;
Suraneni, Prannoy ;
Grugel, Richard ;
Radlinska, Aleksandra .
CONSTRUCTION AND BUILDING MATERIALS, 2020, 258
[40]   Melting and solidifying behavior of lunar regolith simulant under a vacuum environment [J].
Guo, Ze-Shi ;
Li, Meng ;
Xing, Dan ;
Liang, Cun-Guang ;
Hao, Bin ;
Ma, Peng-Cheng .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2025, 108 (08)