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首页> 外文期刊>Journal of geophysical research. Planets >Water and chlorine content in the Martian soil along the first 1900 m of the Curiosity rover traverse as estimated by the DAN instrument
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Water and chlorine content in the Martian soil along the first 1900 m of the Curiosity rover traverse as estimated by the DAN instrument

机译:Dan仪器估计,沿火星土壤中的水和氯含量

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摘要

The presence of hydrated phases in the soil and near-surface bedrock of Gale Crater is thought to be direct evidence for water-rock interaction in the crater in the ancient past. Layered sediments over the Gale Crater floor are thought to have formed in past epochs due to sediment transport, accumulation, and cementation through interaction with fluids, and the observed strata of water-bearing minerals record the history of these episodes. The first data analysis of the Dynamic Albedo of Neutrons (DAN) investigation on board the Curiosity rover is presented for 154 individual points of active mode measurements along 1900 m of the traverse over the first 361 Martian solar days in Gale crater. It is found that a model of constant water content within subsurface should be rejected for practically all tested points, whereas a two-layer model with different water contents in each layer is supported by the data. A so-called direct two-layer model (water content increasing with depth) yields acceptable fits for odometry ranges between 0 and 455 m and beyond 638 m. The mean water (H_2O) abundances of the top and bottom layers vary from 1.5 to 1.7wt % and from 2.2 to 3.3wt %, respectively, while at some tested spots the water content is estimated to be as high as ~5wt %. The data for odometry range 455-638 m support an inverse two-layer model (water content decreasing with depth), with an estimated mean water abundance of 2.1 ± 0.1wt % and 1.4 ± 0.04wt % in the top and bottom layers, respectively.
机译:据认为,土壤中的水合相和近地面基岩被认为是古代陨石坑中水岩相互作用的直接证据。人们认为,由于与液体相互作用,由于沉积物的运输,积累和胶结而导致的层状沉积物被认为在过去的时期内形成,并且观察到的水矿物质层记录了这些发作的历史。在Gale Crater中的前361个火星日,对中子的动态反照率(DAN)研究的第一个数据分析(DAN)调查进行了好奇心流动站的154个单独的活性模式测量点。发现实际上所有测试的点应该拒绝地下恒定水含量的模型,而数据中具有不同水含量的两层模型受到数据的支持。所谓的直接两层模型(随深度增加的水量增加)可接受的拟合拟合范围在0到455 m之间,超过638 m以上。顶层和底层的平均水(H_2O)丰度分别从1.5%到1.7wt%,分别从2.2%到3.3%,而在某些经过测试的斑点,估计水含量高约5wt%。探进行范围的数据455-638 m支持逆两层模型(水含量随深度降低),估计的平均水丰度分别为2.1±0.1WT%和1.4±0.04wt% 。

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