首页> 外文期刊>Journal of structural geology >Structural analysis of mylonitic rocks in the Cougar Creek Complex, Oregon-Idaho using the porphyroclast hyperbolic distribution method, and potential use of SC'-type extensional shear bands as quantitative vorticity indicators
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Structural analysis of mylonitic rocks in the Cougar Creek Complex, Oregon-Idaho using the porphyroclast hyperbolic distribution method, and potential use of SC'-type extensional shear bands as quantitative vorticity indicators

机译:利用卟啉双曲线分布法对俄勒冈爱达荷州美洲狮溪综合体中的似泥质岩石进行结构分析,并可能使用SC'型延伸剪切带作为定量涡度指标

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Mylonitic rocks of the Cougar Creek Complex of northeastern Oregon and west-central Idaho provide an opportunity to document the deformational structures produced during general non-coaxial shear within quartz-feldspar mylonites and to explore the potential role of SC'-type extensional shear bands in vorticity analysis. Well-developed feldspar porphyroclasts within six mylonite zones were utilized to estimate bulk kinematic vorticity (W_k) using the porphyroclast hyperbolic distribution (PHD) method. W_k values for the Cougar Creek mylonites range from W_k = 0.26 to W_k = 0.37. Synthetic and antithetic shear band inclinations were measured relative to observed shear zone boundaries within five mylonite zones with estimated W_k values and compared to the non-coaxial flow field geometries and eigenvector orientations. In each mylonite zone, synthetic SC'-type shear band populations exhibit a range of inclination with maximum inclination lying approximately parallel to the acute bisector (AB) of the eigenvectors. Similarly, antithetic shear band populations show a range of inclination near the obtuse bisector (OB) of the eigenvectors. We infer that SC'-type extensional shear bands form initially parallel to AB and OB and rotate towards the flow plane with progressive deformation, decreasing their inclination relative to the shear zone boundary. AB and OB have significance in the strain field in that they represent orientations of maximum angular strain rate. Thus, planes perpendicular to AB and OB are mechanically favorable for small zones of localized simple shear (shear bands) within the heterogeneous bulk strain of the mylonite. Orientation analysis of populations of SC'-type shear bands may provide a direct, quantitative means of estimating W_k.
机译:俄勒冈州东北部和爱达荷州中西部的美洲狮溪复合体的Mylonitic岩石提供了一个机会,可以记录在石英-长石my石内部一般非同轴剪切过程中产生的变形结构,并探索SC'型延伸剪切带的潜在作用。涡度分析。利用卟啉双曲线分布(PHD)方法,利用六个my石带中发育良好的长石卟啉弹性体来估算整体运动涡度(W_k)。美洲狮溪my的W_k值范围从W_k = 0.26到W_k = 0.37。相对于五个估计的W_k值的Mylonite区域内观察到的剪切带边界,测量了合成剪切带和相对剪切带的倾斜度,并将其与非同轴流场的几何形状和特征向量方向进行了比较。在每个镍铁矿带中,合成的SC'型剪切带种群都表现出一定的倾角范围,最大倾角与特征向量的急性平分线(AB)大致平行。类似地,对切剪切带种群在特征向量的钝角平分线(OB)附近显示了一定的倾斜范围。我们推断,SC'型延伸剪切带最初平行于AB和OB形成,并随着逐渐变形而向流平面旋转,从而减小了它们相对于剪切带边界的倾斜度。 AB和OB在应变场中具有重要意义,因为它们代表最大角应变率的方向。因此,垂直于AB和OB的平面在机械上有利于小范围的局部单变剪切力(剪切带),该分布在my石的不均匀整体应变中。对SC'型剪切带总体的取向分析可以提供一种直接的,定量的估计W_k的方法。

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