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首页> 外文期刊>Journal of geophysical research. Planets >Distribution of Radioactive Heat Sources and Thermal History of the Moon
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Distribution of Radioactive Heat Sources and Thermal History of the Moon

机译:放射性热源的分布和月球的热历史

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The initial distribution of heat sources in crustal and mantle reservoirs plays a major role in the thermal evolution of the Moon. We use new constraints on the thickness of the crust, the size of a nearside low in crustal magnetization, surface composition data from orbit, Apollo samples, and mass balance considerations to generate a set of plausible post magma ocean initial conditions. We then test those initial conditions using the 3-D thermochemical mantle convection code Gaia and compare with observables. Models that use Lunar Prospector gamma-ray spectrometer values of thorium throughout the highland crust cannot sustain long lasting volcanic activity, as low abundances of heat-producing elements are left in the mantle to keep an Earth-like bulk silicate composition. The low magnetic field intensities of the innermost Procellarum KREEP Terrane are consistent with a higher heat production than in the outermost portion and delayed cooling below the Curie temperature of iron metal until after 3.56 Ga when the dynamo field strength is known to have decreased by an order of magnitude. The distribution of crustal heat sources also influences the depth evolution of isotopic closure isotherms for a range of isotopic systems relevant to radiometric dating, which may be important for sample age estimation. Core crystallization can sustain a continuous dynamo for about 1 billion years, after which dynamo activity is potentially more episodic.
机译:地壳和地幔储层中热源的初始分布在月球的热演化中起着重要作用。我们对地壳的厚度,地壳磁化强度的尺寸,来自轨道的表面组成数据,阿波罗样本和质量平衡考虑的考虑来使用新的限制,以生成一组合理的岩浆后海洋初始条件。然后,我们使用3-D热化疗对流代码GAIA测试这些初始条件,并与可观察物进行比较。在整个高地外壳中使用thor的月球前瞻性γ射线光谱仪值的模型无法维持持久的火山活性,因为在地幔中留下了较低的热产生元素,以保持地球样的散装硅酸盐组成。最内向的procellarum kreep地座的低磁场强度与最外面的部分相比,与最外面的部分相比,铁金属的库丽温度低于最外层的部分,直到3.56 ga之后,当已知发电机场的强度通过订单降低时数量级。地壳热源的分布还影响了一系列与辐射测定相关的同位素系统的同位素闭合等温线的深度演化,这对于样本年龄估计可能很重要。核心结晶可以维持连续的发电机约10亿年,此后发电机活动可能更具发作性。

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