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3D palaeogeographic reconstructions of the Phanerozoic versus sea-level and Sr-ratio variations

机译:生代与海平面和Sr比变化的3D古地理重建

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Abstract A full global geodynamical model over 600 million years (Ma) has been developed at the University of Lausanne during the past 20 years. We show herein how the 2D maps were converted into 3D (i.e., full hypsometry and bathymetry), using a heuristic-based approach. Although the synthetic topography may be viewed as relatively crude, it has the advantage of being applicable anywhere on the globe and at any geological time. The model allows estimating the sea-level changes throughout the Phanerozoic, with the possibility, for the first time, to flood accordingly continental areas. One of the most striking results is the good correlation with “measured” sea-level changes, implying that long-term variations are predominantly tectonically-driven. Volumes of mountain relief are also estimated through time and compared with strontium isotopic ratio (Sr-ratio), commonly thought to reflect mountain belt erosion. The tectonic impact upon the general Sr-ratio trend is shown herein for the first time, although such influence was long been inferred.
机译:摘要在过去的20年中,洛桑大学已经开发了一个完整的全球地球动力学模型,该模型超过6亿年(Ma)。我们在本文中展示了如何使用基于启发式的方法将2D地图转换为3D(即完整的高度计和水深计)。尽管合成地形可能被视为相对粗糙,但它具有可在全球任何地方和任何地质时间适用的优势。该模型可以估算整个古生代的海平面变化,并有可能首次淹没相应的大陆区域。最惊人的结果之一是与“测得的”海平面变化的良好相关性,这表明长期变化主要是构造驱动的。还可以通过时间估算山区的救济量,并与通常被认为反映山区侵蚀的锶同位素比(Sr-比率)进行比较。虽然很早就推断出了这种构造对总体Sr比率趋势的影响,但这是第一次。

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