Göğüş Oğuz H, Sundell Kurt, Uluocak Ebru Şengül, Saylor Joel, Çetiner Uğurcan
Eurasia Institute of Earth Sciences, Istanbul Technical University (ITU), İstanbul, Turkey.
Department of Geosciences, Idaho State University, Pocatello, USA.
Sci Rep. 2022 Apr 1;12(1):5500. doi: 10.1038/s41598-022-08629-8.
The high flux magmatism, crustal shortening/extension and plateau formation in Cordilleran orogenic systems have been explained by removal of lithosphere (lower crust and the sub-arc mantle lithosphere) that develops beneath the magmatic arc and hinterland regions. However, the primary role of this process driving surface uplift, and crustal deformation is not well understood. Here, reconciling geodynamic model predictions with lithospheric structure and paleoelevation estimates, we suggest that viscous drip-type lithospheric removal from beneath the Central (Peruvian) Andes can explain several tectonic features: (1) "double humped" shaped/axisymmetric topographic profile and rapid surface rise (up to 1.2 km in ~ 4.31 Myrs); (2) thicker crust associated with the lower surface elevation of the Altiplano plateau (Lake Titicaca region) (negative residual topography) and higher topography and thinner crust of Western and Eastern Cordilleras (positive residual topography); and (3) faster wave speed (colder)/sub-Moho anomaly underlying the Altiplano, surrounded by slower speed anomalies on both western arc-forearc areas and parts of the eastern Cordillera and Sub-Andes. Our results emphasize the important role of lithospheric drip and associated mantle dynamics in the transient evolution of Andean orogeny controlling surface uplift and crustal flow and thickening.
科迪勒拉造山系统中的高流量岩浆活动、地壳缩短/伸展和平原形成,已被解释为岩浆弧和腹地地区下方发育的岩石圈(下地壳和弧下地幔岩石圈)的移除。然而,这个驱动地表隆升和地壳变形过程的主要作用尚未得到很好的理解。在此,通过将地球动力学模型预测与岩石圈结构和古海拔估计相协调,我们认为从秘鲁安第斯山脉中部下方以粘性滴状形式移除岩石圈,可以解释几个构造特征:(1)“双峰”形/轴对称地形剖面和快速地表隆升(在约431万年中高达1.2千米);(2)与的的喀喀湖地区阿尔蒂普拉诺高原较低地表海拔相关的较厚地壳(负剩余地形),以及西科迪勒拉山脉和东科迪勒拉山脉较高地形和较薄地壳(正剩余地形);(3)阿尔蒂普拉诺下方更快的波速(更冷)/莫霍面下异常,在西部弧前陆地区和东科迪勒拉山脉及亚安第斯山脉部分地区周围被较慢速度异常所环绕。我们的结果强调了岩石圈滴流及相关地幔动力学在安第斯造山运动控制地表隆升、地壳流动和增厚的瞬态演化中的重要作用。