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Monitoring southwest Greenland’s ice sheet melt with ambient seismic noise

机译:利用周围的地震噪声监测格陵兰西南部的冰盖融化

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The Greenland ice sheet presently accounts for ~70% of global ice sheet mass loss. Because this mass loss is associated with sea-level rise at a rate of 0.7 mm/year, the development of improved monitoring techniques to observe ongoing changes in ice sheet mass balance is of paramount concern. Spaceborne mass balance techniques are commonly used; however, they are inadequate for many purposes because of their low spatial and/or temporal resolution. We demonstrate that small variations in seismic wave speed in Earth’s crust, as measured with the correlation of seismic noise, may be used to infer seasonal ice sheet mass balance. Seasonal loading and unloading of glacial mass induces strain in the crust, and these strains then result in seismic velocity changes due to poroelastic processes. Our method provides a new and independent way of monitoring (in near real time) ice sheet mass balance, yielding new constraints on ice sheet evolution and its contribution to global sea-level changes. An increased number of seismic stations in the vicinity of ice sheets will enhance our ability to create detailed space-time records of ice mass variations.
机译:格陵兰冰原目前约占全球冰原质量损失的70%。由于这种质量损失与海平面以每年0.7毫米的速度上升有关,因此,开发改进的监测技术以观察冰盖质量平衡的持续变化是至关重要的。普遍使用星载质量平衡技术。然而,由于它们的空间和/或时间分辨率低,它们不足以用于许多目的。我们证明,根据地震噪声的相关性来衡量,地壳中地震波速度的微小变化可用于推断季节性冰盖的质量平衡。冰川物质的季节性加载和卸载会在地壳中引起应变,然后这些应变会由于孔隙弹性过程而导致地震速度发生变化。我们的方法提供了一种新的,独立的方式(近实时)监测冰盖质量平衡,从而对冰盖演化及其对全球海平面变化的贡献产生了新的限制。在冰原附近增加地震台数将增强我们创建详细的时空冰量变化记录的能力。

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