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On the Solar Climate of the Moon and the Resulting Surface Temperature Distribution
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作者 Gerhard Kramm Nicole Mölders +1 位作者 Martina Berger Ralph Dlugi 《Natural Science》 CAS 2022年第9期386-420,共35页
The solar climate of our Moon is analyzed using the results of numerical simulations and the recently released data of the Diviner Lunar Radiometer Experiment (DLRE) to assess (a) the resulting distribution of the sur... The solar climate of our Moon is analyzed using the results of numerical simulations and the recently released data of the Diviner Lunar Radiometer Experiment (DLRE) to assess (a) the resulting distribution of the surface temperature, (b) the related global mean surface temperature T<sub>s</sub>>, and (c) the effective radiation temperature T<sub>e</sub> <sub></sub>often considered as a proxy for T<sub>s</sub>> of rocky planets and/or their natural satellites, where T<sub>e</sub> <sub></sub>is based on the global radiation budget of the well-known “thought model” of the Earth in the absence of its atmosphere. Because the Moon consists of similar rocky material like the Earth, it comes close to this thought model. However, the Moon’s astronomical features (e.g., obliquity, angular velocity of rotation, position relative to the disc of the solar system) differ from that of the Earth. Being tidally locked to the Earth, the Moon’s orbit around the Sun shows additional variation as compared to the Earth’s orbit. Since the astronomical parameters affect the solar climate, we predicted the Moon’s orbit coordinates both relative to the Sun and the Earth for a period of 20 lunations starting May 24, 2009, 00:00 UT1 with the planetary and lunar ephemeris DE430 of the Jet Propulsion Laboratory of the California Institute of Technology. The results revealed a mean heliocentric distance for the Moon and Earth of 1.00124279 AU and 1.00166376 AU, respectively. The mean geocentric distance of the Moon was 384792 km. The synodic and draconic months deviated from their respective means in a range of -5.7 h to 6.9 h and ±3.4 h, respectively. The deviations of the anomalistic months from their mean range between -2.83 d and 0.97 d with the largest negative deviations occurring around the points of inflection in the curve that represents the departure of the synodic month from its mean. Based on the two successive passages of the Sun through the ascending node of the lunar equator plane, the time interval between them co 展开更多
关键词 Solar Climate Temperature Inequality Hölder’s Inequility global Radiation budget Local Radiation budget global energy budget Local energy budget global Albedo global Averaging Effective Radiation Temperature Surface Temperature Slab Temperature Multilayer-Force-Restore Method
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全球年平均能流与辐射强迫研究进展 被引量:1
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作者 高凤玲 华泽钊 +1 位作者 陶乐仁 崔国民 《四川环境》 2013年第1期100-104,共5页
介绍了温室效应的概念;从全球年平均能流及辐射强迫的角度概述了当前温室效应及全球变暖的研究现状,说明人为因素是造成全球变暖的主因。对目前全球变暖研究中存在的问题讨论指出,全球年平均能流中大气向下的长波辐射和地表潜热通量以... 介绍了温室效应的概念;从全球年平均能流及辐射强迫的角度概述了当前温室效应及全球变暖的研究现状,说明人为因素是造成全球变暖的主因。对目前全球变暖研究中存在的问题讨论指出,全球年平均能流中大气向下的长波辐射和地表潜热通量以及气溶胶的辐射强迫仍存在着较大的不确定性,应该加强对平流层水蒸汽及太阳活动光谱分析的观测和研究;须采取一定的节能减排措施。 展开更多
关键词 温室效应 全球变暖 全球年平均能流 辐射强迫
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