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《中国工程科学》 >> 2013年 第15卷 第7期

利用嫦娥一号卫星微波探测仪数据反演月球表面物理温度

1. 中国科学院微波遥感技术重点实验室,北京 100190;

2. 中国科学院空间科学与应用研究中心,北京 100190

资助项目 :国家“863”计划重点项目(2010AA12220405) 收稿日期: 2013-04-22 发布日期: 2013-07-04 13:19:59.000

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摘要

本文利用理论研究的结果,建立了月表物理温度反演模型,结合嫦娥一号微波探测仪(CELMS)数据对全月球物理温度进行了反演。同时分析了物理温度变化对微波辐射的影响及其与表面地形等的关系,为其他月表信息反演提供了依据和物理温度的测量信息。

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参考文献

[ 1 ] 李雄耀,王世杰,程安云. 月球表面温度物理模型研究现状[J]. 地球科学进展,2007,22(5):480-485. 链接1

[ 2 ] Lucas J W,Conel J E,Hagemeyer W A,et al. Lunar surface thermal characteristics from Surveyor 1 [J]. Journal of Geophysical Research,1967,72(2):779-789. 链接1

[ 3 ] Little R C,Feldman W C,Maurice S,et al. Latitude variation of the subsurface lunar temperature:Lunar Prospector thermal neutrons [J]. Journal of Geophysical Research,2003,108(E5): 12-1-12-9. 链接1

[ 4 ] Lawson S L,Jakosky B M,Hye- Sook Park,et al. Brightness temperatures of the lunar surface:Calibration and global analysis of the Clementine long-wave infrared camera data [J]. Journal of Geophysical Research,2000,105(E2):4273-4290. 链接1

[ 5 ] Lawson S L,Jakosky B M. Brightness Temperatures of the Lunar Surface(Abstract No.1892)[C]// The Clementine Long- Wave Infrared Global Data Set,30th Annual Lunar and Planetary Science Conference,Houston,Texas,1999.

[ 6 ] Lawson S L. Brightness temperatures of the lunar surface:Calibration and analysis of Clementine long- wave infrared camera images [D]. Boulder:University of Colorado,2000. 链接1

[ 7 ] Lawson S L,Jakosky B M. Lunar surface thermophysical properties derived from Clementine LWIR and UVVIS images [J]. Journal of Geophysical Research,2001,106(E11):27911-27932. 链接1

[ 8 ] Hagermann A,Tanaka S,Yoshida S,et al. Regolith thermal property inversion in the Lunar-A heat-flow experiment [J]. Bulletin of the American Astronomical Society,2001,33:1147.

[ 9 ] Pettit E,Nicholson S B. Lunar radiation and temperatures [J]. Astrophysical Journal,1930,71:102-135. 链接1

[10] Sinton W M. Physics and Astronomy of the Moon [M]. New York:Academic Press,1962.

[11] Murray B C,Wildey R L. Surface temperature variations during the lunar nighttime [J]. Astrophysical Journal,1964,139:734- 750. 链接1

[12] Saari J M. The surface temperature of the antisolar point of the moon [J]. Icarus,1964,3:161-163. 链接1

[13] Low F J. Lunar nighttime temperatures measured at 20 microns [J]. Astrophysical Journal,1965,142:806-808. 链接1

[14] Ingrao H C,Young A T,Linsky J L. The Nature of the Lunar Surface [M]. Baltimore:The Johns Hopkins Press,1966.

[15] Stimpson L D,Lucas J W. Revised lunar surface thermal characteristics obtained from the Surveyor V spacecraft [J]. Journal of Spacecraft and Rockets,1970,7(11):1317-1322. 链接1

[16] Pugh M J,Bastin J A. Infrared observations of the moon and their interpretation [J]. Earth,Moon,and Planets,1972,5(1- 2):16-30. 链接1

[17] Vitkus G,Garipay R R,Hagemeyer W A,et al. Lunar surface temperatures and thermal characteristics,Surveyor VII:A preliminary report(NASA SP-173)[R]. Washington D C:National Aeronautics and Space Administration,1968.

[18] Vitkus G,Garipay R R,Hagemeyer W A,et al. Lunar surface temperatures and thermal characteristics,Surveyor VI :A preliminary report(NASA SP-166)[R]. Washington D C:National Aeronautics and Space Administration,1968.

[19] Vitkus G,Lucas J W,Saari J M. Lunar Surface Thermal Characteristics During Eclipse from Surveyors III,V and after Sunset from Surveyor V(No. 68-747)[C]// AIAA 3rd Thermophysics Conference,Los Angeles,California,1968.

[20] Cremers C J,Birkebak R C. Thermal Conductivity of Fines from Apollo 12 [C]// Proceedings of the Second Lunar Science Conference,Cambridge:MIT Press,1971,3:2311-2315.

[21] Cremers C J,Birkebak R C,Dawson J P. Thermal Conductivity of Fines from Apollo 11 [C]// Levinson A A,ed.Proceedings of the Apollo 11 Lunar Science Conference,New York:Pergammon Press,1970,3:2045-2050.

[22] Keihm S J,Langseth M G. Surface Brightness Temperatures at the Apollo 17 Heat Flow Site:Thermal Conductivity of the Upper 15 cm of Regolith [C]// Proceedings of the Fourth Lunar Science Conference,Oxford:Pergamon Press,1973,3:2053-2513.

[23] Racca G D. Moon surface thermal characteristics for moon orbiting spacecraft thermal analysis [J]. Planetary and Space Science,1995,43(6):835-842. 链接1

[24] Wesselink A J. Heat conductivity and nature of the lunar surface material [J]. Bulletin of the Astronomical Institutes of the Netherlands,1948,10:351-363. 链接1

[25] Jaeger J C. The surface temperature of the moon [J]. Australian Journal of Physics,1953,6(1):10-21. 链接1

[26] Jones W P,Watkins J R,Calvert T A. Temperatures and thermophysical properties of the lunar outermost layer [J]. Earth, Moon,and Planets,1975,13(4):475-494. 链接1

[27] Wieczorek M A,Huang S. A reanalysis of Appllo 15 and 17 Surface and Subsurface Temperature Series(Abstract No. 1682) [C]// 37th Annual Lunar and Planetary Science Conference, League City,Texas,2006.

[28] Price S D,Mizuno D,Murdock T L. Thermal profiles of the eclipsed moon [J]. Advances in Space Research,2003,31 (11):2299-2304. 链接1

[29] Monstein C. The moon’s temperature at λ=2.77 cm [R]. Switzerland:ETH Zürich,2003.

[30] Mitchell D L,Pater I D. Microwave imaging of Mercury’s thermal emission at wavelengths from 0.3 to 20.5 cm [J]. Icarus, 1994,110:2-32. 链接1

[31] 姜景山,王振占,张晓辉,等. 微波月亮——人类对月球的全 新视角——中国“嫦娥一号”卫星微波探测仪若干探测结果 [J]. 遥感技术与应用,2009,24(4):409-422. 链接1

[32] 李 芸,王振占,姜景山. 月表温度剖面对于“嫦娥一号”卫星 微波探测仪探测亮温影响的模拟研究[J]. 中国科学:地球科 学,2009,39(8):1045-1058. 链接1

[33] 王振占,李 芸,姜景山,等. 用“嫦娥一号”卫星微波探测仪 亮温反演月壤厚度和~3 He资源量评估的方法及初步结果分 析[J]. 中国科学,2009,39(8):1069-1084. 链接1

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