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Strain and vorticity analysis using small-scale faults and associated drag folds

机译:使用小规模断层和相关阻力褶皱的应变和涡度分析

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Small-scale faults with associated drag folds in brittle-ductile rocks can retain detailed information on the kinematics and amount of deformation the host rock experienced. Measured fault orientation (α), drag angle (β) and the ratio of the thickness of deflected layers at the fault (L) and further away (T) can be compared with a, 0 and LIT values that are calculated with a simple analytical model. Using graphs or a numerical best-fit routine, one can then determine the kinematic vorticity number and initial fault orientation that best fits the data. The proposed method was successfully tested on both analogue experiments and numerical simulations with BASIL. Using this method, a kinematic vorticity number of one (dextral simple shear) and a minimum finite strain of 2.5-3.8 was obtained for a population of antithetic faults with associated drag folds in a case study area at Mas Rabassers de Dalt on Cap de Creus in the Variscan of the easternmost Pyrenees, Spain.
机译:脆性延性岩石中伴有褶皱的小规模断层可以保留有关主体岩石运动学和变形量的详细信息。可以将测得的断层方位(α),阻力角(β)以及断层处偏斜层(L)和更远处(T)的厚度之比与通过简单分析计算出的a,0和LIT值进行比较模型。然后使用图形或数值最佳拟合例程,可以确定最适合数据的运动涡度数和初始断层方位。该方法在BASIL的模拟实验和数值模拟中均得到了成功的测试。使用这种方法,在Cap de Creus上Mas Rabassers de Dalt的案例研究区域中,具有相关褶皱褶皱的一对对生断层的运动涡度数为1(右旋简单剪切),最小有限应变为2.5-3.8。在西班牙最东比利牛斯山脉的瓦里斯坎。

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