月球岩石圈弹性厚度研究进展
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本文为国家自科学基金项目(编号41864001, 42030110)和贵州省科技计划项目(编号 \[2018\]5769)联合资助的成果。


Research progress on estimating lunar lithosphere elastic thickness
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    摘要:

    月球热演化研究需要丰富的月表热流数据。当前唯一的月表热流数据不完全可靠,单一数据也不足代表月球全球热流特征,通过月球岩石圈弹性厚度估算月表热流将会是有效的替代方案。针对弹性厚度估算的问题,概要回顾了以往估算的研究方法和成果,并对近年来利用重力地形导纳估算弹性厚度的理论方法进行了详细的介绍。近年来的研究结果表明月球全球岩石圈的Te可能较小,暗示月表地形形成于岩石圈冷却前较长的一段时间。个别研究成功地估算了个别质量瘤盆地的Te,但大部分质量瘤盆地的较难估算,这不仅与质量瘤盆地复杂物理过程有关,还可能与岩石圈复杂的补偿机制有关。由于Te仅仅是岩石圈强弱的表征,不同研究方法得出的Te值存在差异是可能的。随着后续探月活动的开展,与国际社会合作布设月球热流载荷,结合后续研究对月球内部结构、月壳和月幔流变学特征的丰富认识,有望优化现有Te估算的理论与方法,进而为全球热流估算及热演化研究提供约束。

    Abstract:

    Detailed measurements of surface heat flow are needed to understand lunar thermal evolution. The insitu heat flow measurement at only one landing site is not sufficient to characterise global properties. To estimate the surface heat flow globally, an alternative and effective solution is indirectly through the study of elastic thickness Te. This study summarizes previous research and undertakes a review of Te estimation from gravity/topography admittance. Current studies indicate that the global value of lunar lithosphere elastic thickness is possibly small, suggesting the surface topography formed over a long period before the lunar lithosphere cooled. There are studies successfully estimating elastic thickness Te at some mare basins, but it is difficult to estimate Te for all of them. This failure is attributed not only to the complex selenophysical process, but also to the complexity of the lunar lithospheric compensation. It should be noted that the estimation of Te from different methods could disagree with each other, owing to the fact that Te is merely a quantity implying the strength of the lithosphere. In the forthcoming lunar exploration, an international cooperation is suggested to measure the surface heat flow globally. These measurements will not only provide optimization on the recent estimation of Te, but also be beneficial to the heat flow estimation globally and provide constraints on the lunar thermal evolution, especially with the understanding of lunar inner structure and the rheological properties of lunar crust and mantle.

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钟振,范广学,鄢建国,陈世国.2021.月球岩石圈弹性厚度研究进展[J].地质学报,95(9):2692-2702.
Zhong Zhen, Fan Guangxue, Yan Jianguo, Chen Shiguo.2021. Research progress on estimating lunar lithosphere elastic thickness[J]. Acta Geologica Sinica,95(9):2692-2702.

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  • 收稿日期:2021-06-23
  • 最后修改日期:2021-07-23
  • 在线发布日期: 2021-08-04