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Plate Tectonics and the Archean Earth

机译:板块构造和阿甲地球

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If we accept that a critical condition for plate tectonics is the creation and maintenance of a global network of narrow boundaries separating multiple plates, then to argue for plate tectonics during the Archean requires more than a local record of subduction. A case is made for plate tectonics back to the early Paleoproterozoic, when a cycle of breakup and collision led to formation of the supercontinent Columbia, and bimodal metamorphism is registered globally. Before this, less preserved crust and survivorship bias become greater concerns, and the geological record may yield only a lower limit on the emergence of plate tectonics. Higher mantle temperature in the Archean precluded or limited stable subduction, requiring a transition to plate tectonics from another tectonic mode. This transition is recorded by changes in geochemical proxies and interpreted based on numerical modeling. Improved understanding of the secular evolution of temperature and water in the mantle is a key target for future research. ??Higher mantle temperature in the Archean precluded or limited stable subduction, requiring a transition to plate tectonics from another tectonic mode.??Plate tectonics can be demonstrated on Earth since the early Paleoproterozoic (since c. 2.2 Ga), but before the Proterozoic Earth's tectonic mode remains ambiguous.??The Mesoarchean to early Paleoproterozoic (3.2–2.3 Ga) represents a period of transition from an early tectonic mode (stagnant or sluggish lid) to plate tectonics.??The development of a global network of narrow boundaries separating multiple plates could have been kick-started by plume-induced subduction.
机译:如果我们接受板块构造的临界条件是在分离多个板的狭窄边界的全球网络的创建和维护,那么在Archean期间争论板构造需要的俯冲记录需要更多的俯冲记录。案件是将板构造的返回到早期的古形话识,当一个分手和碰撞导致形成超镇内哥伦比亚的循环,并且在全球范围内注册了双峰变质。在此之前,保存的地壳和生存偏差更少,地质记录可能仅产生底板出现的下限。在Archean中的较高的地幔温度排除或有限的稳定俯冲,需要从另一种构造模式过渡到板构造。通过地球化学代理的变化来记录该转换,并基于数值建模解释。改善了地幔中温度和水的世俗演变的理解是未来研究的关键目标。 ?? Archean中的较高的地幔温度排除或有限的稳定俯冲,需要从另一个构造模式转变为板块构造。在地球上可以在早期的古普罗佐奇(自C.21AG)以来的地球上证明构造。地球的构造模式仍然模棱两可.??中古普罗佐奇(3.2-2.3 Ga)代表了从早期构造模式(停滞或缓慢)到板构造的时期的过渡期。一个全球狭义界限的发展分离多个板可以通过血管诱导的俯冲开始踢球。

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