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Potential of pressure solution for strain localization in the Baccu Locci Shear Zone (Sardinia, Italy)

机译:Baccu Locci剪切区(意大利撒丁岛)中的应变局部化压力解决方案的潜力

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The mylonites of the Baccu Locci Shear Zone (BLSZ), Sardinia (Italy), were deformed during thrusting along a bottom-to-top strain gradient in lower greenschist facies. The microstructure of metavolcanic protoliths shows evidence for composite deformation accommodated by dislocation creep within strong quartz porphyroclasts, and pressure solution in the finer grained matrix. The evolution of mylonite is simulated in two sets of numerical experiments, assuming either a constant width of the deforming zone (model 1) or a narrowing shear zone (model 2). A 2-5 mm y~(-1) constant-external-velocity boundary condition is applied on the basis of geologic constraints. Inputs to the models are provided by inverting paleostress values obtained from quartz recrystallized grain-size paleopiezometry. Both models predict a significant stress drop across the shear zone. However, model 1 involves a dramatic decrease in strain rate towards the zone of apparent strain localization. In contrast, model 2 predicts an increase in strain rate with time (from 10~(-14) to 10~(-12)s~(-1)), which is consistent with stabilization of the shear zone profile and localization of deformation near the hanging wall. Extrapolating these results to the general context of crust strength suggests that pressure-solution creep may be a critical process for strain softening and for the stabilization of deformation within shear zones.
机译:撒丁岛(意大利)的Baccu Locci剪切带(BLSZ)的my石在下格林西斯相中沿底部到顶部的应变梯度推进时发生变形。准火山初生岩的微观结构显示出复合变形的证据,该变形是由强石英卟啉中的位错蠕变和细颗粒基质中的压力溶液引起的。假设变形区(模型1)的宽度恒定或剪切区变窄(模型2)的宽度恒定,可通过两组数值实验来模拟my石的演化。基于地质约束条件,采用了一个2-5 mm y〜(-1)恒定外边界条件。通过反转从石英重结晶的粒度古法测得的古应力值来提供模型的输入。两种模型都预测整个剪切区域的应力将显着下降。但是,模型1涉及朝着表观应变局部区域的应变率急剧下降。相反,模型2预测应变率随时间增加(从10〜(-14)到10〜(-12)s〜(-1)),这与剪切带剖面的稳定和变形的局部化是一致的在吊墙附近。将这些结果推论到地壳强度的一般情况表明,压力-溶液蠕变可能是应变软化和剪切区域内变形稳定的关键过程。

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