早期地球上大陆地的形成由侵入性岩层控制
A B Rozel1, G J Golabek2, C Jain1
1Institute of Geophysics, ETH Zurich, 8092 Zurich, Switzerland.
Nature
|May 9, 2017
概括
地球的早期
科学领域:
- 地质科学
- 星球科学
- 早期的地球动力学
背景情况:
- 在板块构造学之前,早期地球的地球动力学制度受到争议.
- 古代的地幔温度和岩层可能比现在更高.
- 存在两个模型:热管构造学 (以火山为主) 和岩软盖 (以侵入性岩石为主).
研究的目的:
- 调查原始色石-石-巨石 (TTG) 大陆地的形成.
- 测试热管与早期地球上的浮动层构造模型的有效性.
- 确定哪种早期地球地力学模式最能解释观测到的TTG组成.
主要方法:
- 使用了全球热化学对流的自相一致的数值模型.
- 将岩过程纳入模型.
- 对喷发效率进行了系统参数研究.
主要成果:
- 热管构造模型产生了寒冷的地热,无法产生类似地球的原始大陆地.
- 冥王星的柔软盖模型产生了更热的地地热,成功地复制了观察到的TTG岩石比例.
- 在普鲁顿软盖模型中,喷发效率低于40%,与低,中,高压TTG的现场数据相匹配.
结论:
- 冥王星的柔软盖板构造系统,其特点是侵入性岩层,是早期地球地形成的更合理的模型,而不是热管构造系统.
- 这一发现表明,在板块构造出现之前,古地球在全球范围内运行在了冥王星的柔软盖子制度下.
- 这项研究为解释原始TTG地的起源提供了强有力的数字支持.
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