小行星/彗星撞击后地球自转轴的变化及其地质效应

F. Barbiero
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引用次数: 0

摘要

在这篇文章中,两极的突然移动被认为是火山爆发、造山运动、气候变化、海平面变化以及大规模灭绝等反复发生的地质危机的解释。这种转变通常被认为是不可能的,因为假设只有行星撞击才能显著改变地球的动量。然而,两极的位置是由赤道凸起决定的;如果它们由于某种原因被“重塑”,极点就会发生移动,动量不会发生任何显著变化。由于海洋的巨大延伸,地球本质上是一颗不稳定的行星,以至于一次看似无关紧要的撞击可以引发一个过程,在很短的时间内,也就是地质时间的瞬间,引发赤道隆起的重塑,从而使两极永久性地移动。当这种情况发生时,其表面、大气、海洋和大陆上的所有物质都会突然受到切向力的作用,从而引发全球灾难,并对气候、火山活动和地幔环流细胞产生长期影响。
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Changes in the Rotation Axis of Earth After Asteroid/Cometary Impacts and their Geological Effects
In this paper sudden shifts of the poles are proposed as an explanation for the recurrent geological crisis during which volcanic eruptions, orogenesis, climatic changes, sea levels variations, together with mass extinctions occur. Such shifts are usually considered impossible on the assumption that only a planetary impact could change in a significant way the Earth’s momentum. The position of the poles, however, is determined by the equatorial bulges; if they are “reshaped” for some reason, the poles shift without any significant change of the momentum. Due to the enormous extend of its oceans, Earth is an inherently unstable planet, so much so that a kick apparently irrelevant can trigger a process that in a very short period, that is instantaneously in geological time, provokes a reshaping of the equatorial bulge, thus making the poles shift permanently. When this happens all the masses on its surface, atmosphere, oceans and continents, are suddenly subjected to tangential forces, thus triggering a global catastrophe and long lasting effects for what concerns climate, volcanism and circulation cells of the mantle.
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