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Intrusion of granitic magma into the continental crust facilitated by magma pulsing and dike-diapir interactions: Numerical simulations

机译:岩浆脉动和堤坝—dia— interaction相互作用促进了花岗岩岩浆侵入大陆壳:数值模拟

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摘要

We conducted a 2-D thermomechanical modeling study of intrusion of granitic magma into the continental crust to explore the roles of multiple pulsing and dike-diapir interactions in the presence of visco-elasto-plastic rheology. Multiple pulsing is simulated by replenishing source regions with new pulses of magma at a certain temporal frequency. Parameterized "pseudo-dike zones" above magma pulses are included. Simulation results show that both diking and pulsing are crucial factors facilitating the magma ascent and emplacement. Multiple pulses keep the magmatic system from freezing and facilitate the initiation of pseudo-dike zones, which in turn heat the host rock roof, lower its viscosity, and create pathways for later ascending pulses of magma. Without diking, magma cannot penetrate the highly viscous upper crust. Without multiple pulsing, a single magma body solidifies quickly and it cannot ascent over a long distance. Our results shed light on the incremental growth of magma chambers, recycling of continental crust, and evolution of a continental arc such as the Sierra Nevada arc in California.
机译:我们对花岗岩岩浆侵入大陆地壳进行了二维热力学建模研究,以探讨在存在粘弹塑性流变学的情况下多重脉动和堤坝-dia岩相互作用的作用。通过向源区域补充一定时间频率的岩浆新脉冲来模拟多重脉冲。包括岩浆脉冲上方的参数化“伪堤防带”。仿真结果表明,堤坝和脉动都是促进岩浆上升和就位的关键因素。多个脉冲使岩浆系统不致冻结,并促进了拟堤堰带的形成,从而使主岩顶加热,降低了其粘性,并为后来的岩浆脉冲上升创造了路径。如果不进行堤防,岩浆将无法穿透高粘度的上地壳。没有多个脉冲,单个岩浆体会迅速凝固,并且无法长距离上升。我们的结果揭示了岩浆室的增长,大陆壳的再循环以及大陆弧(例如加利福尼亚的内华达山脉弧)的演化。

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  • 来源
    《Tectonics》 |2016年第6期|1575-1594|共20页
  • 作者单位

    Univ Southern Calif, Dept Earth Sci, Los Angeles, CA 90089 USA;

    Univ Southern Calif, Dept Earth Sci, Los Angeles, CA 90089 USA|Johannes Gutenberg Univ Mainz, Inst Geosci, Mainz, Germany|Johannes Gutenberg Univ Mainz, Ctr Volcanoes & Atmosphere Magmat Open Syst, Mainz, Germany;

    Univ Southern Calif, Dept Earth Sci, Los Angeles, CA 90089 USA;

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