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首页> 外文期刊>Journal of Glaciology >A novel tilt sensor for studying ice deformation: application to streaming ice on Jarvis Glacier, Alaska
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A novel tilt sensor for studying ice deformation: application to streaming ice on Jarvis Glacier, Alaska

机译:用于研究冰变形的新型倾斜传感器:在贾维斯冰川,阿拉斯加州冰冰的应用

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We developed a tilt sensor for studying ice deformation and installed our tilt sensor systems in two boreholes drilled close to the shear margin of Jarvis Glacier, Alaska to obtain kinematic measurements of streaming ice. We used the collected tilt data to calculate borehole deformation by tracking the orientation of the sensors over time. The sensors' tilts generally trended down-glacier, with an element of cross-glacier flow in the borehole closer to the shear margin. We also evaluated our results against flow dynamic parameters derived from Glen's exponential flow law and explored the parameter space of the stress exponent n and enhancement factor E. Comparison with values from ice deformation experiments shows that the ice on Jarvis is characterized by higher n values than that is expected in regions of low stress, particularly at the shear margin (3.4). The higher n values could be attributed to the observed high total strains coupled with potential dynamic recrystallization, causing anisotropic development and consequently sped up ice flow. Jarvis' n values place the creep regime of the ice between basal slip and dislocation creep. Tuning E towards a theoretical upper limit of 10 for anisotropic ice with single-maximum fabric reduces the n values by 0.2.
机译:我们开发了一种用于研究冰变形的倾斜传感器,并以两个钻孔安装我们的倾斜传感器系统,靠近贾维斯冰川,阿拉斯加的剪切边缘,以获得流冰的运动测量。我们使用收集的倾斜数据来通过跟踪传感器随时间的方向来计算钻孔变形。传感器的倾斜通常会使下冰川趋于趋向于冰川,并且在钻孔中的交叉冰川流元素更靠近剪切余量。我们还评估了我们对来自Glen的指数流法的流动动态参数的结果,并探索了应力指数N和增强因子E的参数空间。与来自冰变形实验的值的比较表明jarvis上的冰的特征在于n值越高预期在低应力区域中,特别是在剪切边缘(3.4)。较高的N值可归因于观察到的高总菌株,其耦合潜在的动态重结晶,引起各向异性发展,因此加速冰流。 jarvis的n值将冰的蠕动状态放在基底滑动和脱位蠕变之间的冰。对于具有单最大织物的各向异性冰的各向异性冰的理论上限调整e将n值减少0.2。

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