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Influence of shear heating on microstructurally defined plate boundary shear zones

机译:剪切加热对组织定义的板边界剪切区的影响

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In plate-boundary scale ductile shear zones defined by microstructural weakening, shear heating may lead to a temperature increase over 5 m.y. of up to 80 degrees C just below the brittle ductile transition, up to 120 degrees C just below the Moho, and to thermal boundary zones tens of km wide on either side of the shear zone. Where rock strength is highest, shear zones are narrow (similar to 1 km), and thermal gradients within the shear zone itself are low, so there is no tendency for increased localization. Heating results in thermal weakening, but this is partly offset by grain growth related to the decrease in stress. In shear zones of the order of 10 km width, shear stress, strain rate, and hence heat generation are lower, and thermal gradients are insufficient to cause additional strain localization. Temperature increases in the mid-crust are of the order of 10 degrees C, insufficient to cause partial melting or an increase in metamorphic grade. In the upper mantle, shear zones may be 50 km or more wide, and the temperature increase is less than 20 degrees C in 5 m.y., but temperature differences between center and margin may enhance the strain rate at the center by up to 18%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在由微结构弱化定义的板边界延性剪切区内,剪切加热可能导致温度升高超过5m.y。刚好在脆性延性转变以下,最高温度为80摄氏度,在莫霍面以下,最高温度为120摄氏度,在剪切区的两侧延伸至数十公里宽的热边界区。在岩石强度最高的地方,剪切带很窄(大约1 km),并且剪切带本身内部的温度梯度很低,因此没有增加局部化的趋势。加热会导致热减弱,但这部分被与应力降低相关的晶粒长大所抵消。在宽度为10 km的剪切区域中,剪切应力,应变率以及因此产生的热量较低,并且热梯度不足以引起额外的应变局部化。地壳中部的温度升高约为10摄氏度,不足以引起部分熔化或变质等级的升高。在上地幔中,剪切带的宽度可能超过50 km,并且在5 m.y.内温度升高小于20摄氏度,但是中心和边缘之间的温差可能会使中心的应变率提高18%。 (C)2015 Elsevier Ltd.保留所有权利。

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