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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Rate controlling processes in the creep of polar ice, influence of grain boundary migration associated with recrystallization
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Rate controlling processes in the creep of polar ice, influence of grain boundary migration associated with recrystallization

机译:极地冰蠕变中的速率控制过程,与重结晶有关的晶界迁移的影响

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摘要

Information on the deformation modes and recrystallization processes in polar ice sheets was obtained thanks to the analysis of the ice structure along two deep ice cores from Greenland and Antarctica. It is shown that the deformation of polar ice at low stresses is produced by intracrystalline slip accommodated by grain boundary migration (gbm). A deformation model based on an equilibrium between work-hardening and recovery processes has been developed. The decrease in dislocation density is due to both gbm associated with grain growth and the formation of boundaries by recrystallization. The value of the dislocation density along the Byrd and GRIP ice cores obtained thanks to the model is about 1 * 10~(11) m~(-2). This value is in agreement with data from synchrotron X-ray diffraction on samples taken along the core. This deformation model can account for the deformation of polar ice at low stresses. It is shown that the flow law with a stress exponent lower than 2 can be related to the efficiency of gbm as a recovery process.
机译:通过对格陵兰岛和南极洲两个深冰芯沿冰结构的分析,获得了有关极地冰盖变形模式和再结晶过程的信息。结果表明,在低应力下极冰的变形是由晶界迁移(gbm)调节的晶内滑移产生的。已经建立了基于加工硬化和恢复过程之间平衡的变形模型。位错密度的降低是由于与晶粒生长相关的gbm以及由于重结晶而形成的边界。通过该模型获得的沿伯德和格里普冰芯的位错密度值约为1 * 10〜(11)m〜(-2)。该值与沿铁心样品获得的同步加速器X射线衍射数据一致。该变形模型可以解释低应力下极地冰的变形。结果表明,应力指数小于2的流动规律可能与gbm作为恢复过程的效率有关。

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