基于GPS的活动冰架裂谷水平应变率分布

V. Janssen
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引用次数: 3

摘要

南极冰盖的质量损失主要通过冰山崩解发生在冰架的边缘,冰山崩解是由冰山崩解之前的大裂谷的形成和扩展控制的,这些裂谷可能导致冰架破裂。本文报道了在南极洲东部Amery冰架活动裂谷系统上收集的两个季节的全球定位系统(GPS)数据的分析。在2004/05年南极夏季期间,测定了一个由11个站点组成的观测网在三周内的水平应变率,并将结果与2002/03年季节获得的应变率结合起来进行比较。整个网络的最大主应变率在6 - 32 [× 10-3/年]之间变化,而最小主应变率通常在1-17 [× 10-3/年]左右。应变分布的明显变化主要归因于现有裂缝穿过GPS网和裂谷尖端的幕式运动。经证实,2005/06年的裂谷传播速度正在减慢。打开率是从位于裂谷正方向的基线推断出来的。使用累积和方法对网络进行分析被发现是检测与裂缝传播相关的小基线长度变化的有效方法。
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Horizontal strain rate distribution on an active ice shelf rift from in-situ GPS data
Mass loss from the Antarctic ice sheet predominantly occurs at the fringing ice shelves via iceberg calving, which is controlled by the initiation and propagation of large rifts that precede iceberg detachment and can lead to ice shelf break-up. This paper reports on the analysis of Global Positioning System (GPS) data collected at an active rift system on the Amery Ice Shelf, East Antarctica, over two field seasons. Horizontal strain rates are determined for a network of 11 sites observed over three weeks during the 2004/05 Antarctic summer period, and the results are combined with, and compared to, strain rates obtained in the 2002/03 season. Maximum principal strain rates across the network vary between 6 and 32 [x 10-3/yr], while minimum principal strain rates are generally about 1-17 [x 10-3/yr]. Changes evident in the strain distribution can mostly be attributed to existing fractures passing through the GPS network and the episodic movement of the rift tip. It is confirmed that rift propagation in 2005/06 was slowing down. Opening rates are inferred from baselines situated normal to the rift. Analysis of the network using a cumulative sum approach is found to be an effective method to detect small baseline length changes associated with rift propagation.
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