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首页> 外文期刊>Journal of geophysical research. Planets >Temperatures Near the Lunar Poles and Their Correlation With Hydrogen Predicted by LEND
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Temperatures Near the Lunar Poles and Their Correlation With Hydrogen Predicted by LEND

机译:月球两极附近和高温与氢相关预测的放贷

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摘要

The lunar polar regions offer permanently shadowed regions (PSRs) representing the only regions which are cold enough for water ice to accumulate on the surface. The Lunar Exploration Neutron Detector (LEND) aboard the Lunar Reconnaissance Orbiter (LRO) has mapped the polar regions for their hydrogen abundance which possibly resides there in the form of water ice. Neutron suppression regions (NSRs) are regions of excessive hydrogen concentrations and were previously identified using LEND data. At each pole, we applied thermal modeling to three NSRs and one unclassified region to evaluate the correlation between hydrogen concentrations and temperatures. Our thermal model delivers temperature estimates for the surface and for 29 layers in the sub-surface down to 2 m depth. We compared our temperature maps at each layer to LEND neutron suppression maps to reveal the range of depths at which both maps correlate best. As anticipated, we find the three south polar NSRs which are coincident with PSRs in agreement with respective (near)-surface temperatures that support the accumulation of water ice. Water ice is suspected to be present in the upper ≈19 cm layer of regolith. The three north polar NSRs however lie in non-PSR areas and are counter-intuitive as such that most surfaces reach temperatures that are too high for water ice to exist. However, we find that temperatures are cold enough in the shallow sub-surface and suggest water ice to be present at depths down to ≈35-65 cm. Additionally we find ideal conditions for ice pumping into the sub-surface at the north polar NSRs. The reported depths are observable by LEND and can, at least in part, explain the existence and shape of the observed hydrogen signal. Although we can substantiate the anticipated correlation between hydrogen abundance and temperature the converse argument cannot be made.
机译:月球极地提供被永久遮挡区域(psr)代表的唯一地区这是水冰积累足够冷吗表面上。探测器(借)登上月球勘测轨道器(LRO)映射的极地氢可能驻留的丰度水冰的形式。抑制区域(nsr)地区过量的氢浓度和发现使用提供数据。极,我们应用热建模三个nsr和一个非保密区域评价氢浓度之间的相关性温度。表面温度的估计和29层地下2米深度。而温度地图在每一层借中子抑制地图显示范围最好的深处都映射关联。预期,我们发现三个南极nsr这是重合的psr同意吗各自(附近)表面温度支持水冰的积累。被怀疑在上层≈19厘米层风化层。然而躺在non-PSR地区和反直觉的,大多数表面达到对水的温度过高冰存在。在浅地下和足够冷的时候建议出席深处到水冰≈35 - 65厘米。冰注入地下的北方极地nsr。放贷,至少在一定程度上可以解释的的存在和形状观察氢信号。预期氢之间的相关性丰度和温度相反的论点不能做。

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