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首页> 外文期刊>Geophysical Research Letters >PSInSAR as a new tool to monitor pre-eruptive volcano ground deformation: Validation using GPS measurements on Piton de La Fournaise
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PSInSAR as a new tool to monitor pre-eruptive volcano ground deformation: Validation using GPS measurements on Piton de La Fournaise

机译:PSInSAR作为监测火山爆发前地面变形的新工具:在Piton de La Fournaise上使用GPS测量进行验证

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摘要

The Permanent Scatterers Synthetic Aperture Radar Interferometry (PSInSAR) is a technique, which aims at ground deformation mapping with millimetric precision. In the framework of the Globvolcano ESA project, we evaluated a PSInSAR derived approach to monitor ground deformation in highly active volcanic areas, based on the example of Piton de La Fournaise. The Permanent Scatterer (PS) velocities show two main areas of deformation: (1) the eastern flank displaying old lava flow subsidence (0.05-0.13 m.y~(-1)); and (2) the summit cone highly disturbed by eruptions. The PS time series for the summit area agree with the cGPS trends with small long-term (weeks/months) ground displacements preceding eruptions (0.05-0.35 m.y~(-1)) and large rapid ground displacements linked to eruptions. Despite some limitations, such as the loss of coherence during the most rapid ground displacements and lava flow emplacement, PSInSAR and its derived approach provide a reliable inference of the volcano ground deformation over large areas.
机译:永久散射体合成孔径雷达干涉法(PSInSAR)是一项技术,旨在以毫米级精度绘制地面变形。在Globvolcano ESA项目的框架中,我们以Piton de La Fournaise为例,评估了PSInSAR派生的方法来监测高活性火山区的地面变形。永久散射体(PS)的速度显示出两个主要的变形区域:(1)东部侧面显示出旧的熔岩流沉降(0.05-0.13 m.y〜(-1)); (2)顶锥受到喷发的强烈干扰。顶峰地区的PS时间序列与cGPS趋势一致,喷发前长期(几周/月)的地面位移较小(0.05-0.35 m.y〜(-1)),而喷发又有较大的快速地面位移。尽管存在一些局限性,例如在最快速的地面位移和熔岩流进位过程中失去了连贯性,但PSInSAR及其派生的方法可以可靠地推断出大面积火山岩的地面变形。

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