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Refining the structural framework of the Khimti Khola region, east-central Nepal Himalaya, using quartz textures and c-axis fabrics

机译:使用石英纹理和c轴织物完善尼泊尔喜马拉雅中东部的Khimti Khola地区的结构框架

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New quartz texture and c-axis fabric data from across the Paleoproterozoic Ulleri-Phaplu-Melung orthogneiss in the Khimti Khola region of east central Nepal provide new constraints on the internal structural framework of the Himalaya that help shed light on the convergence accommodation processes active in the upper portion of the crust during orogenesis. These data outline a strain history that varies across the unit. Deformation near the base of the unit occurred at similar to 605 (50) degrees C with evidence of significant static recrystallization and recovery preserved in quartz, whereas deformation near the top of the unit occurred at similar to 540 (50) degrees C with quartz characterized by dynamic recrystallization mechanisms. The strength of the quartz c-axis fabrics follows a similar spatial pattern, with those from near the top of the unit recording stronger fabrics than those measured from lower in the unit. Together, these data are interpreted to indicate strain localization, possibly at progressively lower temperature, near the top of the Ulleri-Phaplu-Melung orthogneiss. This interpretation is consistent with cooling ages that indicate the upper boundary of the unit coincides with an out-of-sequence shear zone. This study not only provides a structural characterization of the shear zone, helping to refine the kinematic framework of this portion of the Himalaya, but also confirms the utility of fabric strength analysis in deciphering strain localization within pervasively deformed rocks.
机译:尼泊尔东部中部Khimti Khola地区古元古代Ulleri-Phaplu-Melung斜生正统的新石英质地和c轴织物数据为喜马拉雅山的内部结构框架提供了新的约束条件,有助于阐明活跃于该区域的会聚适应过程造山过程中地壳的上部。这些数据概述了整个设备上变化的应变历史。单元底部附近的变形发生在类似于605(50)摄氏度的情况下,石英中保留了明显的静态重结晶和恢复的迹象,而单元顶部附近的变形发生在类似于540(50)摄氏度的情况下,石英具有通过动态重结晶机制。石英c轴织物的强度遵循相似的空间模式,从单元顶部附近的强度比从单元下部的强度更高。在一起,这些数据被解释为表明应变定位,可能在逐渐降低的温度下,靠近Ulleri-Phaplu-Melung直生片麻岩的顶部。这种解释与冷却时间一致,冷却时间表明设备的上边界与不连续的剪切区一致。这项研究不仅提供了剪切带的结构特征,有助于完善喜马拉雅山这部分的运动学框架,而且证实了织物强度分析在破译普遍变形的岩石中的应变局部化方面的实用性。

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