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首页> 外文期刊>International Journal of Earth Sciences >Restoration of the Cretaceous uplift of the Harz Mountains, North Germany: evidence for the geometry of a thick-skinned thrust
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Restoration of the Cretaceous uplift of the Harz Mountains, North Germany: evidence for the geometry of a thick-skinned thrust

机译:北德哈尔茨山脉白垩纪隆升的恢复:厚皮逆冲的几何学证据

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摘要

Reverse movement on the Harz Northern Boundary Fault was responsible for the Late Cretaceous uplift of the Harz Mountains in northern Germany. Using the known geometry of the surface position and dip of the fault, and a published cross section of the Base Permian horizon, we show that it is possible to predict the probable shape of the fault at depth, down to a detachment level. We use the 'inclined-shear' method with constant heave and argue that a shear angle of 30A degrees was most likely. In this case, the detachment level is at a depth of ca. 25 km. Kinematic restoration of the Harz Mountains using this fault geometry does not produce a flat horizon, rather it results in a ca. 4 km depression. Airy-Heiskanen isostatic equilibrium adjustment of the Harz Mountains restores the Base Permian horizon to the horizontal, as well as raising the Moho to a depth of 32 km, a typical value for northern Germany. Restoration also causes a rotation of tectonic fabrics within the Harz Mountains of about 11A degrees clockwise. We show that this model geometry is very good fit to the interpreted DEKORP BASIN 9601 deep seismic profile.
机译:哈尔茨北边界断裂的反向运动是造成德国北部哈尔茨山脉晚白垩世隆升的原因。利用已知的断层表面位置和倾角的几何形状以及已公开的二叠纪地层剖面,我们表明可以预测断层在深处直至分离水平的可能形状。我们使用具有恒定升沉的“斜剪”方法,并认为最有可能产生30A度的剪切角。在这种情况下,分离水平为约1埃的深度。 25公里使用这种断层几何学对哈尔茨山脉进行运动学复原不会产生平坦的水平线,而是会导致大约成水平的。洼地4公里。 Harz山脉的Airy-Heiskanen等静压平衡调整可将二叠纪基础层恢复到水平,并将Moho提升到32 km的深度,这是德国北部的典型值。恢复还导致构造织物在哈尔茨山脉内顺时针旋转约11A度。我们表明,该模型的几何形状非常适合解释的DEKORP BASIN 9601深地震剖面。

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