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Rollback Orogeny Model for the Evolution of the Swiss Alps

机译:瑞士阿尔卑斯山脉演化的回滚造山模型

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The construction of the European Alps and the Himalayas has been related to the convergence and subsequent collision of two continental plates. Nearly all models of orogeny build on this concept, and all of them relate the stacking of nappes and the buildup of topography to compressional forces at work in response to the collision between two continental plates. For the central European Alps, however, these models fail to explain the first-order observations of a mountain belt, which particularly includes the striking isostatic imbalance between the low surface topography and the thick crust beneath the Alps. Here we review and synthesize data on the geologic architecture of the central Alps, the chronology and pattern of crustal deformation, and information about the deep crustal structure derived from seismic tomography. Furthermore, we discuss the intrinsic and explicit assumptions in the kinematic models of Alpine evolution in the context of plate tectonic considerations. We combine these views with progress in understanding that has been gained through subduction and collision, isostatic mass and force balancing and with information that has been collected on the modern seismic regime. We conclude that a rollback orogeny model for the European plate offers the most suitable concept to explain the ensemble of surface and deep lithosphere observations. In this model gravity forces drive the evolution of the orogen and the construction of surface topography is accomplished without the requirement of a hard collision between two continents.
机译:欧洲阿尔卑斯山和喜马拉雅山的建设与两个大陆板块的汇聚和随后的碰撞有关。几乎所有造山运动模型都建立在这个概念上,并且所有这些模型都将响应于两个大陆板块之间的碰撞而将推覆物的堆积和地形的形成与工作中的压缩力相关联。但是,对于欧洲中部的阿尔卑斯山,这些模型无法解释对一带的一阶观测结果,尤其是包括低表面地形和阿尔卑斯山下方厚壳之间明显的等静不平衡。在这里,我们回顾并综合了阿尔卑斯山中部的地质构造,地壳变形的时间顺序和模式的数据,以及有关地震层析成像得出的深层地壳结构的信息。此外,我们在板块构造考虑的背景下讨论了高山演化运动学模型中的内在和外在假设。我们将这些观点与通过俯冲和碰撞,等静质量和力平衡所获得的理解进步以及现代地震制度中收集到的信息相结合。我们得出的结论是,欧洲板块的回旋造山运动模型提供了最合适的概念来解释地表和深层岩石圈观测的集合。在该模型中,重力驱动造山带的演化,无需两个大陆之间发生硬碰撞,即可完成表面地形的构造。

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  • 来源
    《Tectonics》 |2018年第4期|1097-1115|共19页
  • 作者单位

    Swiss Fed Inst Technol, Inst Geophys, Zurich, Switzerland;

    Univ Bern, Inst Geol Sci, Bern, Switzerland;

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  • 正文语种 eng
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