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首页> 外文期刊>Journal of geophysical research. Planets >The Composition of the South Polar Cap of Mars Derived From Orbital Data
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The Composition of the South Polar Cap of Mars Derived From Orbital Data

机译:火星南极帽的构成来自轨道数据

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摘要

The flexure of the lithosphere under stresses imposed by the geologically young south polar cap is one of the few clues we have regarding the south polar cap composition and the present-day thermal state of Mars. Here, we combine radar, gravity, and topography data with a flexural loading model to estimate the bulk density (ρ) and average real dielectric constant (ε') of the south polar cap, and the elastic thickness of the lithosphere (Te). Given the uncertainties of the data, our results constrain ρ to be 1,100-1,300 kg m~(-3) (best fit of 1,220 kg m~(-3)), ε' to be 2.5-3.4 (best fit of 3.3), and Te to be greater than 150 km (best fit of 360 km). Based on these results, the maximum lithospheric flexure is 770 m, and the polar cap volume could be up to 26% larger than previous estimates that did not account for lithospheric flexure. Our inferred compositions imply that the dust concentration would be at least 9 vol% if the CO_2 ice content were negligible, and that the CO_2 ice concentration would be more than the known 1 vol% CO_2 if the dust concentration were less than 9 vol%. The 1-σ lower limit on Te implies a surface heat flow that is less than 23.5 mW m~(-2). This lower limit is significantly less than the range of acceptable values at the north pole (330-450 km, heat flow of 11-16 mW m~(-2)), and helps satisfy global thermal evolution simulations that predict hemispheric differences in surface heat flow.
机译:压力下的岩石圈的挠曲由地质年轻南部极地冰冠是为数不多的线索有关南极冠成分和现在的热状态的火星。重力,弯曲和地形数据加载模型来估计体积密度(ρ)和平均介电常数(ε)南极帽,弹性厚度岩石圈(Te)。数据,我们的结果限制ρ是1100 - 1300公斤m ~(3)(最适合1220公斤m ~(3)),ε’2.5 - -3.4(3.3)最适合,和Te更大超过150公里(360公里)的最佳匹配。结果,最大的岩石圈挠曲是770m,极冠体积可能高达26%比先前的估计没有占岩石圈挠曲。构图暗示的粉尘浓度将至少9卷%如果二氧化碳冰的内容可以忽略不计,二氧化碳冰吗浓度会超过已知的1卷%二氧化碳如果粉尘浓度小于9卷%。热流,小于23.5 mW m ~(2)。远远低于下限范围可接受的值在北极(330 - 450年11 - 16公里,热流的mW m ~(2)),和帮助满足全球热演化模拟预测半球表面热量的差异流。

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