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首页> 外文期刊>Journal of structural geology >Area balancing as a test of models for the deep structure of mountain belts, with specific reference to the Alps
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Area balancing as a test of models for the deep structure of mountain belts, with specific reference to the Alps

机译:区域平衡作为山区深层结构模型的测试,具体参考阿尔卑斯山

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摘要

Basic concepts of structural restoration are applied to crustal cross-sections through mountain belts to explore large-scale tectonic models and deep structure. However, restored sections should account for variations in pre-orogenic crustal thicknesses. Crustal balancing approaches are reviewed and applied to two Alpine sections, coinciding with deep seismic experiments: NRP-20 East (Central Alps) and ECORS-CROP (Western Alps). Existing studies assume large (>300 km) orogenic contraction and only moderately thinned pre-orogenic crust. The resulting restored sections contain more crust than is imaged beneath the present-day Alps, the missing crust generally assumed to be subducted. Two kinematic modifications reduce the requirement for subduction: thinning and buoyancy-driven return flow of ultra-high-pressure metamorphic rocks during orogenesis; and pre-orogenic hyperextension. Using large stretching factors for the pre-orogenic crust negates crustal subduction on both Alpine transects. If the lower crust was approximately rigid, restorations of the Central Alps require strongly depth-heterogeneous stretching of upper and lower crust during Mesozoic rifting. Relaxing this requirement allows uniform lithospheric stretching, a corollary consistent with published subsidence estimates. Restorations make implicit statements on the form of pre-orogenic basins and the structure of continental margins incorporated into mountain belts that can in turn provide tests of tectonic models.
机译:结构恢复的基本概念被应用于穿过山地带的地壳横截面,以探索大规模的构造模型和深层结构。但是,恢复的剖面应说明造山前地壳厚度的变化。回顾了地壳平衡方法,并将其应用于两个高山断面,与深部地震实验相吻合:NRP-20东(中阿尔卑斯山)和ECORS-CROP(西阿尔卑斯山)。现有研究假设造山带收缩较大(> 300 km),造山前地壳只有中等程度的变薄。所得到的恢复部分包含的地壳比当今阿尔卑斯山下的图像要多,通常认为缺失的地壳被俯冲了。两种运动学上的修改降低了俯冲的需求:造山过程中超高压变质岩的变薄和浮力驱动的回流;和造山前过度扩张。在造山前的地壳中使用较大的拉伸因子可以抵消两个高山样带的地壳俯冲。如果下地壳大致是刚性的,则在中生代裂谷过程中,中阿尔卑斯山的修复体需要上下地壳的深度非均质拉伸。放宽此要求可以实现均匀的岩石圈拉伸,其推论与已公布的沉降估算相一致。恢复对造山前盆地的形式和纳入山区的大陆边缘结构做出了隐含的陈述,进而可以提供构造模型的检验。

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