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Northeast Atlantic breakup volcanism and consequences for Paleogene climate change – MagellanPlus Workshop report

机译:东北大西洋分手火山主义与古雄气候变化的后果 - MagellanPlus研讨会报告

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The northeast Atlantic encompasses archetypal examples of volcanic rifted margins. Twenty-five years after the last ODP (Ocean Drilling Program) leg on these volcanic margins, the reasons for excess melting are still disputed with at least three competing hypotheses being discussed. We are proposing a new drilling campaign that will constrain the timing, rates of volcanism, and vertical movements of rifted margins. This will allow us to parameterise geodynamic models that can distinguish between the hypotheses. Furthermore, the drilling-derived data will help us to understand the role of breakup magmatism as a potential driver for the Palaeocene–Eocene thermal maximum (PETM) and its influence on the oceanographic circulation in the earliest phase of the northeast Atlantic Ocean formation. Tackling these questions with a new drilling campaign in the northeast Atlantic region will advance our understanding of the long-term interactions between tectonics, volcanism, oceanography, and climate and the functioning of subpolar northern ecosystems and climate during intervals of extreme warmth.
机译:东北大西洋包括火山裂泥边缘的原型例子。在上一个ODP(海洋钻井计划)腿上二十五年的这些火山边缘,过度融化的原因仍然争议至少有三个竞争的假设。我们正在提出一个新的钻探运动,将限制火山的时间,火山率和垂直运动的裂线。这将允许我们参与可以区分假设的地磁模型。此外,钻探衍生的数据将有助于我们了解分手岩浆广告中的作用作为古茂物热最大(PETM)的潜在驾驶员及其对东北大西洋形成最早阶段的海洋循环的影响。在东北大西洋地区的新钻探运动中解决这些问题将推动我们对构造,火山,海洋学和气候之间的长期相互作用以及极端温暖间隔期间亚马尔北部生态系统和气候的运作。

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