首页> 外文OA文献 >Role of the Cretaceous normal faults on the formation of the Eocene (Pontide) fold-thrust belt structures in offshore Akcakoca-Amasra area, Western Black Sea basin, Turkey
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Role of the Cretaceous normal faults on the formation of the Eocene (Pontide) fold-thrust belt structures in offshore Akcakoca-Amasra area, Western Black Sea basin, Turkey

机译:白垩纪正常故障对海洋近距离Akcakoca-Amasra地区的虫(Pontide)折止动皮带结构的作用,土耳其西黑海盆地

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摘要

The Western Black Sea basin formed during therifting of the Moesian Platform in Early Cretaceous. The closure of the Neotethys Ocean in the Middle Eocene resulted in the formation of the Pontide fold and thrust belt in northern Turkey. During this study, eight seismic reflection profiles were interpreted to determine the subsurface structural geometry and tectono-stratigraphic evolution of the offshore Akçakoca-Amasra area. The stratigraphy of the study area is determined based on a composite wireline well log of the Akçakoca-1 wildcat well, which was also used to construct a velocity model based onsonic data. We suggest that a major décollement surface was developed during the Eocene Pontide Orogeny. The decollement is located at the limestone clay-shale intraformational transition within the Late Cretaceous (Maastrichtian) - Paleocene Akveren Formation. Normal faults formed during the Cretaceous rifting in the region are located below the décollement surface. They provide tectonic ramps along the décollement surface and allow the decollement to develop ramp-flat thrust fault geometry. A well-developed duplex structure is also present along the seismic lines. The décollement surface serves as the floor thrust of the duplex structure. The roof thrust of the duplex is in the Pliocene Sarıkum formation, dominantly composed of claystone.
机译:在早期白垩纪的莫塞尔平台的莫斯山脉期间形成了西部黑海盆地。中间虫中的新虫后海洋封闭导致土耳其北部的岩石折叠和推力带形成。在本研究期间,解释了八个地震反射型材以确定海上Akçakoca-amasra地区的地下结构几何形状和构造 - 地层演变。研究区域的地层基于Akçakoca-1野猫型井的复合有线井日志确定,其也用于构建基于速度模型的onSonic数据。我们建议在虫族山突期间开发了一个主要的Décolleate。 Demollement位于石灰岩(Maastrichtian) - 古世茂Akveren形成内的石灰石粘土 - 页岩肿瘤内过渡。在该区域的白垩纪河流期间形成的正常故障位于Décollement表面下方。它们沿着荷内表面提供构造斜坡,并允许解耦开发斜坡扁平推力故障几何形状。沿着地震线也存在良好的双工结构。 Décollement表面用作双工结构的地板推力。双工的屋顶推力是在裂解的全科氏菌形成,由粘土岩组成。

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