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首页> 外文期刊>Pure and Applied Geophysics >Rapid Exhumation in the Alpine Belt of the Betic-Rif (W Mediterranean): Tectonic Extrusion
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Rapid Exhumation in the Alpine Belt of the Betic-Rif (W Mediterranean): Tectonic Extrusion

机译:Betic-Rif(W地中海)的高山带快速发掘尸体:构造挤压

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摘要

Extreme cooling rates (~500 °C/m.y.) during the late stage, 22–18 Ma, orogenic evolution of the Alpine Betic-Rif belt are suggested to result from rapid exhumation caused by tectonic extrusion and concomitant extensional tectonics. The extrusional/extensional tectonic setting is controlled by the SW-NE trending break-off scar left in the lithosphere of the Alborán Sea and SE Spain after detachment of a lithospheric slab. The extruded material represents the collisional crustal nappe pile (together with fragments of underlying mantle, such as the Ronda peridotites) and the cause of the extrusion is the thermal softening within the crustal section during and after collision. The extrusion/extension took place under the influence of a NW-SE directed compressive regime, perpendicular to the collisional belt. At the same time the sub-lithospheric mantle still showed the E-W compressive regime of the collisional stage. The Alpine tectono-metamorphic evolution of the Betic-Rif belt in the W Mediterranean thus comprises two main stages: (1) continental collision with formation of primary nappes and high-pressure metamorphic parageneses, (2) tectonic extrusion with vertically directed tectonics (high pressure, very rapid decompression) and extensional tectonics with roughly horizontal, lateral transport and final emplacement of the extruded mélange in the form of a stack of detachment sheets (low pressure, very rapid cooling). This model for the Betic-Rif may offer important constraints to all rapidly exhumed convergent terranes.
机译:晚期Betic-Rif带的造山演化,是在22-18 Ma后期的极端降温速度(〜500°C / m.y。),这是由于构造挤压和伴随的伸展构造引起的快速发掘而导致的。挤压/伸展构造背景受岩石圈平板分离后留在阿尔伯良海和西班牙东南部岩石圈的SW-NE趋势折断疤痕的控制。挤压的材料代表了碰撞的地壳堆积体(连同下覆的地幔碎片,例如隆达橄榄岩),挤压的原因是碰撞期间和碰撞后地壳部分内的热软化。挤出/拉伸在垂直于碰撞带的NW-SE定向压缩状态的影响下进行。同时,岩石圈以下的地幔仍显示出碰撞阶段的E-W压缩状态。因此,地中海地中海地区Betic-Rif带的高山构造变质演化包括两个主要阶段:(1)大陆碰撞,形成了原生的推覆和高压变质带,(2)构造挤压形成了垂直定向的构造(高压力,非常快速的减压)和伸展构造,并以成堆的分离片的形式将挤压的混杂纤维大致水平,横向运输和最终放置(低压,非常快速的冷却)。 Betic-Rif的此模型可能对所有快速挖掘的会聚地形提供重要约束。

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