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利用全月重力/地形导纳估计月球弹性层厚度 被引量:2
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作者 杨永章 李金岭 +2 位作者 松本晃治 花田英夫 李文潇 《中国科学院大学学报(中英文)》 CSCD 北大核心 2018年第4期463-467,共5页
利用最新的GRAIL月球重力数据和LRO地形数据,计算重力/地形导纳及其相关性。结果表明,最新的测月数据能够在球谐系数达到500阶的时候依然保持比较高的相关性,精度得到很大的提高。全月重力/地形导纳在50阶以下(波长大于~220 km),之后迅... 利用最新的GRAIL月球重力数据和LRO地形数据,计算重力/地形导纳及其相关性。结果表明,最新的测月数据能够在球谐系数达到500阶的时候依然保持比较高的相关性,精度得到很大的提高。全月重力/地形导纳在50阶以下(波长大于~220 km),之后迅速增加,维持在110 mgal/km附近。利用Gauss-Newton迭代法计算得到全月弹性平均厚度Te=11.7 km,表明很有可能月球地形在月球早期就已经形成。 展开更多
关键词 重力 地形 导纳 弹性层厚度 Gauss-Newton方法
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Determination of the free lunar libration modes from ephemeris DE430 被引量:4
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作者 Yong-Zhang Yang Jin-Ling Li +1 位作者 Jin-Song Ping Hideo Hanada 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2017年第12期89-94,共6页
The Moon’s physical librations have been extensively studied, and elaborate researches have been developed for the purpose of deriving accurate modes of free librations. Our motivation comes from the Planetary and Lu... The Moon’s physical librations have been extensively studied, and elaborate researches have been developed for the purpose of deriving accurate modes of free librations. Our motivation comes from the Planetary and Lunar Ephemeris DE430 by JPL/NASA, which was created in April 2013,and is reported to be the most accurate lunar ephemeris today using the data from Gravity Recovery and Interior Laboratory(GRAIL). Therefore, the residuals after fitting the model have reduced owing to improvement in the libration models, and the free librations embedded in the Euler angles have also improved. We use Fourier analysis to extract the approximate frequencies from DE430 and then a quadratic interpolation method is used to determine higher accuracy frequencies. With the frequencies,the linear least-squares fitting method is employed to fit the lunar physical librations to DE430. From this analysis we identified the three modes of free physical librations, and estimated the amplitudes as 1.471′′in longitude, 0.025′′in latitude and 8.19′′× 3.31′′for the wobble, with the respective periods of1056.16, 8806.9 and 27262.99 d. Since the free librations damp with time, they require recent excitation or a continuous stimulating mechanism in order to sustain. 展开更多
关键词 MOON physical librations Fourier analysis least squares method
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