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Seismic signal from waves on Titan's seas

机译:来自泰坦海洋的波浪的地震信号

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Seismology is the main tool for inferring the deep interior structures of Earth and potentially also of other planetary bodies in the solar system. Terrestrial seismology is influenced by the presence of the ocean-generated microseismic signal, which sets a lower limit on the earthquake detection capabilities but also provides a strong energy source to infer the interior structure on scales from local to continental. Titan is the only other place in the solar system with permanent surface liquids and future lander missions there might carry a seismic package. Therefore, the presence of microseisms would be of great benefit for interior studies, but also for detecting storm-generated waves on the lakes remotely. We estimated the strength of microseismic signals on Titan, based on wind speeds predicted from modeled global circulation models interior structure. We find that storms of more than 2 m/s wind speed, would create a signal that is globally observable with a high-quality broadband sensor and observable to a thousand kilometer distance with a space-ready seismometer, such as the InSight instruments currently operating on the surface of Mars. (C) 2019 Elsevier B.V. All rights reserved.
机译:地震学是用于推断地球的深层内部结构的主要工具,也是太阳系中其他行星体的主要工具。陆地地震学受海洋产生的微震信号存在的影响,该信号对地震检测能力设定了下限,而且还提供了强大的能源,以推断从本地到欧式的尺度上的内部结构。泰坦是太阳能系统中唯一的其他地方,具有永久性表面液体和未来着色机构可能带有地震包装。因此,微痉挛的存在对于内部研究来说是很大的好处,也是为了远程检测湖泊上的风暴产生的波浪。我们估计了泰坦的微震信号的强度,基于由模型的全局循环模型内部结构预测的风速。我们发现风暴超过2米/升的风速,将创建一个全球可观察的信号,高质量的宽带传感器,可观察到与空间就绪的地震计的千公里距离,例如目前运营的洞察仪器在火星的表面上。 (c)2019 Elsevier B.v.保留所有权利。

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