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A tracer-based algorithm for automatic generation of seafloor age grids from plate tectonic reconstructions

机译:一种基于跟踪器的自动生成来自板构造重建的海底架子网格算法

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摘要

The age of the ocean floor and its time-dependent age distribution control fundamental features of the Earth, such as bathymetry, sea level and mantle heat loss. Recently, the development of increasingly sophisticated reconstructions of past plate motions has provided models for plate kinematics and plate boundary evolution back in geological time. These models implicitly include the information necessary to determine the age of ocean floor that has since been lost to subduction. However, due to the lack of an automated and efficient method for generating global seafloor age grids, many tectonic models, most notably those extending back into the Paleozoic, are published without an accompanying set of age models for oceanic lithosphere. Here we present an automatic, tracer-based algorithm that generates seafloor age grids from global plate tectonic reconstructions with defined plate boundaries. Our method enables us to produce novel seafloor age models for the Paleozoic's lost ocean basins. Estimated changes in sea level based on bathymetry inferred from our new age grids show good agreement with sea level record estimations from proxies, providing a possible explanation for the peak in sea level during the assembly phase of Pangea. This demonstrates how our seafloor age models can be directly compared with observables from the geologic record that extend further back in time than the constraints from preserved seafloor. Thus, our new algorithm may also aid the further development of plate tectonic reconstructions by strengthening the links between geological observations and tectonic reconstructions of deeper time.
机译:海底的年龄及其时间依赖年龄分布控制地球的基本特征,如沐浴,海平面和地幔热量损失。最近,过去板运动的越来越复杂的重建的发展为板式运动学和板材边界进化的模型提供了在地质时间的影响。这些模型隐含地包括确定海底年龄所必需的信息,这已经丢失了俯冲。然而,由于缺乏用于产生全球海底年龄电网的自动化和高效的方法,许多构造模型,最符合人们延伸回古生代的构造模型,没有伴随着海洋岩石圈的伴随年龄模型。在这里,我们提出了一种基于自动的基于示踪基于的算法,其从具有限定的板边界的全局板构造重建产生海底龄网。我们的方法使我们能够为古生代失去的海洋盆地生产新的海底时代模型。根据我们的新年龄网格推断的基于沐浴浴的海平面的估计变化与地理位置的海平面记录估算良好,为Pangea的组装阶段提供了对海平面的峰值的可能解释。这证明了我们的海底时代模型可以与来自地质记录的可观察者相比,我们的地质记录比在时间上进一步延伸而不是保存的海底的约束。因此,我们的新算法还可以通过强化地质观测和更深时间的构造重建之间的联系,帮助平板构造重建的进一步发展。

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