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首页> 外文期刊>International Journal of Earth Sciences >The influence of different rheological parameters on the surface deformation and stress field of the Aegean-Anatolian region
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The influence of different rheological parameters on the surface deformation and stress field of the Aegean-Anatolian region

机译:不同流变参数对爱琴海-Anatolian地区表面变形和应力场的影响

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The Aegean-Anatolian region is characterised by an inhomogeneous deformation pattern with high strain rates and a high seismicity both at the boundaries and in the plate interior. This pattern is controlled by the geometry and rheology of the structural units involved and their tectonic setting. A numerical analysis with a finite-element model of the region is used to quantify the influence of different rheological parameters. Viscoelas-tic material behaviour is implemented for the mantle lithosphere, whereas the crust is modelled with an elastic-plastic rheology. The variation of the inelastic material properties (viscosity and plastic strength) quantifies the influence of these material parameters on the deformation, stress, and strain patterns. Comparison of the modelled results with geodetic and geophysical observations reveals that the viscosity of the mantle lithosphere is the key to explaining the inhomogeneous deformation pattern. The best-fit model yields a viscosity of 10~(20) Pa s beneath Anatolia, whereas adjacent regions have viscosities between 10~(21) and 10~(23) Pa s. The model also explains the intra-plate seismicity and the stress field as well as its partitioning into regions with strike-slip and normal faulting. The final model is in good agreement with seismological, geodetic, and geological observations. Local deviations can be tracked down to small-scale structures, which are not included in the model.
机译:爱琴海-安纳托利亚地区的特征是,在边界处和板块内部均具有高应变率和高地震活动性的不均匀变形模式。这种模式由所涉及的结构单元的几何形状和流变学及其构造环境控制。使用该区域的有限元模型进行的数值分析用于量化不同流变参数的影响。地幔岩石圈具有粘弹性物质的行为,而地壳则具有弹塑性流变学模型。非弹性材料特性(粘度和塑性强度)的变化量化了这些材料参数对变形,应力和应变模式的影响。模拟结果与大地测量和地球物理观测结果的比较表明,地幔岩石圈的粘度是解释非均匀变形模式的关键。最佳拟合模型在安纳托利亚下方的黏度为10〜(20)Pa s,而相邻区域的黏度在10〜(21)和10〜(23)Pa s之间。该模型还解释了板内地震活动性和应力场,以及将其划分为具有走滑和正断层的区域。最终模型与地震,大地测量和地质观测非常吻合。可以将局部偏差追溯到模型中未包含的小规模结构。

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