首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Past and present seafloor age distributions and the temporal evolution of plate tectonic heat transport
【24h】

Past and present seafloor age distributions and the temporal evolution of plate tectonic heat transport

机译:过去和现在的海底年龄分布和板块构造热传输的时间演变

获取原文
获取原文并翻译 | 示例
           

摘要

Variations in Earth's rates of seafloor generation and recycling have far-reaching consequences for sea level, ocean chemistry, and climate. However, there is little agreement on the correct parameterization for the time-dependent evolution of plate motions. A strong constraint is given by seafloorage distributions, which are affected by variations in average spreading rate, ridge length, and the age distribution of seafloor being removed by subduction. Using a simplified evolution model, we explore which physical parameterizations of these quantities are compatible with broad trends in the area per seafloor age statistics for the present-day and back to 140 Ma from paleo-age reconstructions. We show that a probability of subduction based on plate buoyancy (slab-pull, or "sqrt(age)") and a time-varying spreading rate fits the observed age distributions as well as, or better than, a subduction probability consistent with an unvarying "triangular" age distribution and age-independent destruction of ocean floor. Instead, we interpret the present near-triangular distribution of ages as a snapshot of a transient state of the evolving oceanic plate system. Current seafloor ages still contain hints of a -60 Myr periodicity in seafloor production, and using paleoages, we find that a -250 Myr period variation is consistent with geologically-based reconstructions of production rate variations. These long-period variations also imply a decrease of oceanic heat flow by - - 025%/Ma during the last 140 Ma, caused by a 25-50% decrease in the rate of seafloor production. Our study offers an improved understanding of the non-uniformitarian evolution of plate tectonics and the interplay between continental cycles and the self-organization of the oceanic plates.
机译:地球海底生成和循环利用率的变化对海平面,海洋化学和气候产生深远的影响。但是,关于板块运动随时间变化的正确参数设置几乎没有共识。海浪分布给了一个强烈的约束,海浪分布受平均扩展率,脊长和俯冲作用下海底年龄分布变化的影响。使用简化的演化模型,我们探索了这些数量的哪些物理参数设置与当今每海底年龄统计面积的大趋势兼容,并从古年龄重建回到140 Ma。我们显示,基于板的浮力(平板拉力或“ sqrt(age)”)和随时间变化的散布率的俯冲概率与观察到的年龄分布相符,并且与符合不变的“三角形”年龄分布和与年龄无关的海床破坏。取而代之的是,我们将年龄的当前近三角分布解释为不断演变的洋洋板块系统瞬态的快照。当前的海底年龄仍然暗示着海底生产中有-60 Myr的周期性,并且使用古土壤,我们发现-250 Myr的时期变化与生产率变化的基于地质的重建是一致的。这些长期变化还意味着在最后的140 Ma期间,海洋热流减少了--025%/ Ma,这是由于海底生产速率降低了25-50%引起的。我们的研究提供了对板块构造非均匀性演化以及大陆周期与海洋板块自组织之间相互作用的更好理解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号