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Short-lived orogenic cycles and the eclogitization of cold crust by spasmodic hot fluids

机译:短暂的造山周期和痉挛性热流体使冷壳凝结

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Collision tectonics and the associated transformation of continental crust to high-pressure rocks ( eclogites) are generally well-understood processes, but important contradictions remain between tectonothermal models and petrological-isotopic data obtained from such rocks. Here we use Ar-40 - Ar-39 data coupled with a thermal model to constrain the time-integrated duration of an orogenic cycle ( the burial and exhumation of a particular segment of the crust) to be less than 13 Myr. We also determine the total duration of associated metamorphic events to be similar to 20 kyr, and of individual heat pulses experienced by the rocks to be as short as 10 years. Such short timescales are indicative of rapid tectonic processes associated with catastrophic deformation events ( earthquakes). Such events triggered transient heat advection by hot fluid along deformation ( shear) zones, which cut relatively cool and dry subducted crust. In contrast to current thermal models that assume thermal equilibrium and invoke high ambient temperatures in the thickened crust, our non-steady-state cold-crust model satisfactorily explains several otherwise contradictory geological observations.
机译:碰撞构造和伴随的地壳向高压岩石(榴辉岩)转变通常是容易理解的过程,但是构造热模型与从此类岩石获得的岩石同位素数据之间仍然存在重要矛盾。在这里,我们使用Ar-40-Ar-39数据与热模型相结合,将造山周期(地壳的特定部分的埋葬和掘出)的时间积分持续时间限制为小于13 Myr。我们还确定了相关的变质事件的总持续时间类似于20年,岩石经历的单个热脉冲短至10年。如此短的时间尺度表明与灾难性变形事件(地震)相关的快速构造过程。这些事件触发了热流体沿变形(剪切)区域的瞬时热对流,从而剪切了相对凉爽干燥的俯冲地壳。与当前的热模型假设热平衡并在增稠的地壳中调用较高的环境温度相比,我们的非稳态冷壳模型可以令人满意地解释一些相反的地质观测结果。

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