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The role of intraplate strike-slip faults in shaping the surrounding morphology: The Ovacik Fault (eastern Turkey) as a case study

机译:板内走滑断层在塑造周围形态中的作用:以Ovacik断层(土耳其东部)为例

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Although the westward extrusion of the Anatolian Block is mainly compensated along its boundary faults, the North Anatolian and the East Anatolian shear zones, it is internally deformed in a dominant manner by some strike-slip faults as well. To obtain a better understanding about this intraplate deformation of the Anatolian Block, we investigate the tectonic geomorphology of the Ovaak Fault (OF), which is the northeastern member of the Malatya-Ovaak Fault Zone (MOFZ). Further, we apply the most common geomorphic indices, such as the hypsometric curve and integral, longitudinal channel profiles, channel steepness and concavity, mountain front sinuosity, and valley height-width ratio to characterise and quantify the deformation along the OF and the surrounding region where the regional morphology is shaped with the joint effect of palaeo- and neotectonics and other morphological factors such as palaeoglacial processes. The highest hypsometric integral, steepness and concavity values are generally observed along the northeastern strand of the OF (the Munzur Mountains) and the Kemaliye Region. Further, we interpret that high HI and steepness values indicate a regional tectonic uplift because of either a change in fault geometry, which gives rise to the vertical component on the OF, or a regional high convergence zone. Furthermore, this study gives the first calculation of vertical uplift in the northern margin of the Ovacik Basin (OB) as at least 0.5 mm/y for long term deformation history. Thus, our results exhibit that the OF is one of the intraplate strike-slip faults of the Anatolian Block. (C) 2018 Elsevier B.V. All rights reserved.
机译:尽管安那托利亚地块的向西挤压主要沿边界断层(北安那托利亚和东安那托利亚剪切带)进行了补偿,但它也受到一些走滑断层的显着内部变形。为了更好地了解安那托利亚区块的板内变形,我们研究了Ovaak断层(OF)的构造地貌,该断层是Malatya-Ovaak断层带(MOFZ)的东北成员。此外,我们应用最常见的地貌指标,如测压曲线和积分,纵向河道剖面,河道陡峭度和凹度,山前正弦度和山谷高宽比,来表征和量化沿OF和周围区域的变形区域形态是由古构造和新构造学以及其他形态因素(例如古冰川过程)共同作用形成的。通常在OF(Munzur山脉)的东北链和Kemaliye地区观察到最高的测压积分,陡度和凹度值。此外,我们解释说,由于断层几何形状的变化(这会引起OF上的垂直分量)或区域的高收敛带,高HI和陡度值指示区域构造隆升。此外,对于长期变形历史,该研究首次给出了Ovacik盆地(OB)北缘的垂直隆起至少为0.5 mm / y的计算结果。因此,我们的结果表明,OF是安那托利亚区块的板内走滑断层之一。 (C)2018 Elsevier B.V.保留所有权利。

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