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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Estimating terrestrial uranium and thorium by antineutrino flux measurements
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Estimating terrestrial uranium and thorium by antineutrino flux measurements

机译:通过反中微子通量测量估算陆地铀和or

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摘要

Uranium and thorium within the Earth produce a major portion of terrestrial heat along with a measurable flux of electron antineu-trinos. These elements are key components in geophysical and geochemical models. Their quantity and distribution drive the dynamics, define the thermal history, and are a consequence of the differentiation of the Earth. Knowledge of uranium and thorium concentrations in geological reservoirs relies largely on geochemical model calculations. This article describes the methods and criteria to experimentally determine average concentrations of uranium and thorium in the continental crust and in the mantle by using site-specific measurements of the terrestrial antineutrino flux. Optimal, model-independent determinations involve significant exposures of antineutrino detectors remote from nuclear reactors at both a midcontinental and a midoceanic site. This would require major, new antineutrino detection projects. The results of such projects could yield a greatly improved understanding of the deep interior of the Earth.
机译:地球中的铀和or会产生大量的地热,以及可测量的电子反中微子通量。这些元素是地球物理和地球化学模型中的关键组成部分。它们的数量和分布驱动动力学,定义热历史,并且是地球分化的结果。地质储层中铀和th浓度的知识主要取决于地球化学模型的计算。本文介绍了通过使用地面抗中微子通量的特定位置测量值来实验确定大陆壳和地幔中铀和th平均浓度的方法和标准。最佳的,与模型无关的确定涉及在大陆中部和洋中部站点远离核反应堆的抗中微子探测器的大量暴露。这将需要重大的,新的抗中微子检测项目。这些项目的结果可以大大改善对地球深处内部的了解。

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