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首页> 外文期刊>Journal of geophysical research. Planets >Geophysical constraints on the composition and structure of the Martian interior
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Geophysical constraints on the composition and structure of the Martian interior

机译:地球物理成分和约束火星内部的结构

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摘要

Most recent Martian interior structure models are based on the planet's polar moment of inertia C, although the mean moment of inertia I is required for constructing spherically symmetric models of planetary interiors. Using the improved value of C/M p R p 2 recently obtained from a combined reanalysis of the entire set of radio science data collected during the last three decades and accounting for the rotationally and topographically induced shape of the planet's gravitational field, we find a mean moment-of-inertia factor of I/M p R p 2 = 0.3635 ± 0.0012. The new lower value suggests a core radius several tens of kilometers larger if other parameters like core density, crust density, and crust thickness are fixed. It further implies that the Martian crust is several tens of kilometers thicker than previously thought if crust and mantle densities and core size are given. Moreover, the Martian mantle may be less dense, about several tens of kg m~-3, with a smaller iron content than previously thought if crust thickness and core size are specified. The mantle density of Mars is relatively well determined by the planet's moment of inertia factor if crust thickness and density are specified.
机译:最新的火星内部结构模型基于地球的极惯性矩,虽然意思是惯性矩是必需的对构建的球对称模型行星内部。C / M p R p 2最近获得的总和再分析整个无线电科学在过去三十年中收集的数据旋转和会计从地形上诱导地球的形状引力场,我们找到一个意思惯性矩系数I / M p R p 2 = 0.3635±0.0012。如果其他几十公里半径大核心参数如密度、地壳密度和地壳厚度是固定的。成千的火星地壳公里比之前认为的更厚地壳和地幔密度和大小是核心考虑到。密集,约几十公斤米~ 3,比之前认为的小铁含量地壳厚度和核心指定大小。火星地幔密度相对较好由地球的转动惯量因素如果地壳厚度和密度指定。

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