冥王星增长,岩形成和超级喷发的时间表
M E van Zalinge1, D F Mark2,3, R S J Sparks4
1School of Earth Sciences, University of Bristol, Bristol, UK.
Nature
|August 3, 2022
概括
岩的产生和超级喷发是通过冥王星的安置联系在一起的. 遗传的晶体显示了火山爆发之前的岩储存和快速上升.
科学领域:
- 地质学
- 火山学
- 石油学
背景情况:
- 岩的形成形成了花岩和驱动爆炸性喷发.
- 岩转移到上层地是偶发的,与长期的深层地产生形成对比.
- 了解岩上升和喷发的时间尺度对于危险评估至关重要.
研究的目的:
- 调查冥王星与超级爆发之间的时间关系.
- 为了确定喷发前的岩储存条件和时间表.
- 阐明在地上升和积累岩的机制.
主要方法:
- 在中部安第斯山脉中继承的和沙尼丁的约会.
- 在中分析晶体储存温度 (<470°C).
- 基于质性质的岩上升和形成模型.
主要成果:
- 冥王星位置和超级爆发之间存在约4.6 Myr的间隔,周期性约为1 Myr.
- 遗传晶体表明在低温 (<470°C) 中长时间储存.
- 通过堤运输可以快速形成大型上层岩腔 (<1000年).
- 在爆发前的几十年里,浮动岩石发生了破坏.
结论:
- 在中层地热区的融分离,加上偶尔的上升,决定了喷发的时间表.
- 在热化后,上层地的岩腔形成很快.
- 超级火山爆发之前会有快速的冥王星破坏和岩积累.
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