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首页> 外文期刊>Journal of geophysical research. Planets >Quantitative Evaluation of the Lunar Seismic Scattering and Comparison Between the Earth, Mars, and the Moon
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Quantitative Evaluation of the Lunar Seismic Scattering and Comparison Between the Earth, Mars, and the Moon

机译:月球地震散射定量评估及地球、火星、月球对比

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摘要

The intense seismic scattering seen in Apollo lunar seismic data is one of the most characteristic features, making the seismic signals much different from those observed on the Earth. The scattering is considered to be attributed to subsurface heterogeneity. While the heterogeneous structure of the Moon reflects the past geological activities and evolution processes from the formation, the detailed description remains an open issue. Here, we present a new model of the subsurface heterogeneity within the upper lunar crust derived through a full 3D seismic wave propagation simulation. Our simulation successfully reproduced the Apollo seismic observations, leading to a significant update of the scattering properties of the Moon. The results showed that the scattering intensity of the Moon is about 10 times higher than that of the heterogeneous region on the Earth. The quantified scattering parameters could give us a constraint on the surface evolution process of the Moon and enable the comparative study for answering a fundamental question of why the seismological features are different on various planetary bodies.
机译:强烈的地震散射在阿波罗月球地震数据是最之一特征,使地震从这些观察到的信号完全不同地球。归因于地下异质性。月亮反射的异质结构过去的地质活动和演化从形成过程,详细的描述仍然是一个悬而未决的问题。地下的新模型上月球地壳中的异质性通过一个完整的三维地震波派生传播模拟。成功地再现了阿波罗地震观察,导致的一个重要更新月亮的散射特性。结果表明,散射强度月亮是大约10倍地球上不同地区。可以给我们一个量化的散射参数约束表面上的演化过程月亮和启用的比较研究为什么回答一个基本问题地震是不同的在不同的特征行星机构。

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