论文标题

在内部太阳系中火山主义的地质时间演变

On The Geological Time Evolution of Volcanism in the Inner Solar System

论文作者

Kumar, Varnana. M., Girish, T. E., Sathyan, Thara. N., Longhinos, Biju, Panicker, Anjana A. V., Binoy, J.

论文摘要

我们研究了地球物理和生物物理观点上的地球和其他太阳系行星体(汞,月亮,火星和金星)的地质时间演变。地球和其他行星物体中大火成岩省的记录表明,在地质时间尺度上,主要火山活动的增加,减少和停止阶段的存在。我们已经扩展了基于基于地球的观测值的火山喷发强度的现有规模,以适应强烈和极端的火山活动。发现岩石行星对象的质量与内部热量的大小,大火成岩省的发生以及来自可用于内部太阳系的相关数据的主要火山活动的持续时间有关。内部热量幅度还可以决定这些行星物体中火山的强度。地球和火星中火山主义的时间演变可能影响了这些行星的生命和生物进化的起源。

We have studied the geological time evolution of volcanism in Earth and other inner solar system planetary bodies (Mercury, Moon, Mars and Venus) in both geophysical and biophysical perspective. The record of Large Igneous Provinces in Earth and other planetary objects suggest the existence of increasing, decreasing and cessation phases of major volcanic activity over geological time scales. We have extended the existing scale of measuring intensity of volcanic eruptions based on Earth based observations to accommodate intense and extreme volcanic activity. The mass of a rocky planetary object is found to be related to the magnitude of the internal heat, occurrences of Large Igneous Provinces and the duration of major volcanic activity from relevant data available for the inner solar system. The internal heat magnitude may also decide the intensity of volcanism in these planetary objects. The time evolution of volcanism in Earth and Mars has probably influenced the origin of life and biological evolution in these planets.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源