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Implications of strain and vorticity of flow analyses to interpret the kinematics of an oblique convergence event (Zagros Mountains, Iran)

机译:流动和涡度分析对解释斜向收敛事件运动学的影响(伊朗扎格罗斯山脉)

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摘要

Finite strain and vorticity of flow analyses were carried out within the Deh Vazir deformed conglomerates in the Sanandaj-Sirjan metamorphic belt (Zagros Mountains, Iran). This belt is in a sequence of tectono-metamorphic complexes made of low- to high-grade metamorphic rocks affected by a polyphase deformation history. Using R_f/φ technique for two-dimensional strain analysis showed that the finite strain of XZ plane is R_s = 3.7 ± 0.70. The calculation of the harmonic mean from the axial ratios of the extracted pebbles and plotting these data in the Flinn diagram resulted in K = 0.7 ± 0.38 (i.e. oblate strain ellipsoid). Kinematic vorticity analysis of deformed pebbles showed that W_k parameter is 0.59 + 0.10 (i.e. pure-shear dominated non-coaxial flow). The results quantitatively support the recognition of a partitioned dextral inclined transpressive regime with bulk triclinic symmetry along the Sanandaj-Sirjan metamorphic belt resulted from the oblique collision between the African-Arabian continent and the Iranian microcontinents.
机译:在Sanandaj-Sirjan变质带(伊朗扎格罗斯山脉)的De Vazir变形砾岩中进行了有限应变和流动涡度分析。该带是受多相变形历史影响的由低至高品位变质岩构成的一系列构造-变质复合体。使用R_f /φ技术进行二维应变分析表明,XZ平面的有限应变为R_s = 3.7±0.70。根据提取的卵石的轴向比率计算谐波平均值,并将这些数据绘制在Flinn图中,得出K = 0.7±0.38(即扁形椭圆形应变)。变形卵石的运动涡度分析表明,W_k参数为0.59 + 0.10(即纯剪切为主的非同轴流)。结果定量地支持了沿沿Sanandaj-Sirjan变质带散装三斜对称的分区右倾倾斜压迫机制的认识,这是由于非洲-阿拉伯大陆与伊朗微大陆之间的倾斜碰撞而产生的。

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