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Quartz Rheology and Short-time-scale Crustal Instabilities

机译:石英流变学和短时地壳不稳定性

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We present numerical results of thermal-mechanical feedback in crustal quartz rheology and contrast this behavior to the vastly different character of an olivine mantle. In the numerical experiments quartz is found to have a very strong tendency for short-time-scale instabilities, while our numerical experiments show that olivine has a decisive tendency for a stable thermally lubricated slip. At the same time, olivine can also go through a transitional period of creep bursts, which are physically caused by multiple interacting ductile faults at various length and time scales which collocate quickly into a major shear zone. Since olivine has this strong propensity to self organize in a large apparently stable fault system, it lacks the dynamics of interacting ductile faults evident in other minerals. Quartz behaves totally different and keeps its jerky slip behavior for prolonged deformation. An example is shown here in which a 30 × 50 km piece of a wet quarzitic crust is extended for about 2 Ma. The associated total displacement field clearly shows the unstable slipping events, which have a characteristic time frame of one to several years, In contrast, olivine is very stable and has a much longer time scale for thermal instability of 100 kyrs.
机译:我们给出了地壳石英流变学中热机械反馈的数值结果,并将这种行为与橄榄石地幔的极大不同特征进行了对比。在数值实验中,发现石英具有很强的短时尺度失稳趋势,而我们的数值实验表明,橄榄石对于稳定的热润滑滑移具有决定性的趋势。同时,橄榄石还可能经历蠕变爆发的过渡时期,这是由在各种长度和时间范围内多次相互作用的韧性断裂在物理上造成的,这些断裂迅速地并入主要的剪切带。由于橄榄石具有在明显稳定的大型断层系统中自组织的强烈倾向,因此它缺乏其他矿物中明显的相互作用的韧性断层的动力学。石英的行为完全不同,并保持其抖动的滑移行为以延长变形时间。这里显示一个示例,其中一块30×50 km的湿石英地壳延伸了大约2 Ma。相关的总位移场清楚地显示了不稳定的滑动事件,其特征性的时间框架为一到几年。相反,橄榄石非常稳定,并且对于100 kyrs的热不稳定性具有更长的时间尺度。

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