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Lunar recession encoded in tidal rhythmites: a selective overview with examples from Argentina

机译:月经衰退在潮汐节奏中编码:选择性概述与阿根廷的例子

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摘要

The study of tides from the sedimentary record of tidal rhythmites, applying fast Fourier transform analysis, contributes to the understanding of the surficial evolution of our highly dynamic planet, and of the astronomical cycles that influenced the ancient tidal systems. This overview of lunar retreat rates, which includes examples from Argentina, displays a generalized pattern of nonlinear, progressively extended lunar cycles up to the present day. The lunar retreat calculated at different stages of the Earth's history identifies three time spans of extremely high recession rates, amounting to almost twice that of the present day: Archean-Paleoproterozoic (6.93 cm/year), Neoproterozoic I-Ediacaran (7.01 cm/year) and Ediacaran-early Cambrian (6.48 cm/year). Older comparable recession rates are difficult to recognize because of the lack of tidal rhythmic sequences. The maximum lunar retreat rate is registered after the Copernican meteor bombardment event on the Moon at similar to 900 Ma, and the time span coincides with the continental dispersal of Rodinia. Every acceleration of the lunar retreat rate coincides with two main processes: (1) meteorite impacts on the Earth or Moon, and (2) reconfiguration of landmasses accompanied by earthquakes that generated changes in the rotational axis of the Earth, inundation surfaces, and glaciation/deglaciation processes. The simultaneous occurrence of such processes makes it difficult to distinguish the causes and effects of each individual process, but its conjunction would have promoted the destabilization of the Earth-Moon system in terms of moment of inertia that was transferred to the Moon rotation.
机译:潮汐节律沉积记录的潮汐研究,应用快速傅里叶变换分析,有助于了解我们高度动态行星的表现演变,以及影响古代潮汐系统的天文循环。 Lunar Retreat速率概述包括来自阿根廷的示例,显示了本一天的非线性,逐渐扩展的月球周期的广义模式。在地球历史的不同阶段计算的月球撤退标识了三次超高衰退率的跨度,这达到了本天的几乎两倍:Archean-Paleoproterozoic(6.93厘米/年),NeoProterozoice I-Ediacaran(7.01厘米/年) )和Ediacaran早期的寒武纪(6.48厘米/年)。由于缺乏潮汐节律序列,较旧的比较衰退率难以识别。在类似于900 mA的月球上的哥白尼流星轰炸事件之后,在哥白尼的流星轰炸事件之后登记的最高月经撤退率,时间跨度与罗西尼州的欧式分散相一致。月球退缩率的每次加速度都与两个主要过程一致:(1)陨石对地球或月球的影响,(2)陆地的重新配置伴随着地震,淹没表面的旋转轴变化,淹没表面和冰川/亡航进程。这种过程的同时发生使得难以区分每个过程的原因和影响,但其结合将在转移到月球旋转的惯性矩方面促进了地球系统的稳定化。

著录项

  • 来源
    《Geo-marine letters》 |2017年第4期|共12页
  • 作者单位

    Univ Nacl Salta Consejo Nacl Invest Cient &

    Tecn CONICET Inst Super Correlac Geol INSUGEO CEGA Av Bolivia 5150 RA-4400 Salta Argentina;

    Consejo Nacl Invest Cient &

    Tecn CONICET CEGA Inst Super Correlac Geol INSUGEO Av Bolivia 5150 RA-4400 Salta Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
  • 关键词

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