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首页> 外文期刊>Journal of Glaciology >Ground-based remote-sensing techniques for diagnosis of the current state and recent evolution of the Monte Perdido Glacier, Spanish Pyrenees
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Ground-based remote-sensing techniques for diagnosis of the current state and recent evolution of the Monte Perdido Glacier, Spanish Pyrenees

机译:基于地面的遥感技术,用于诊断当前状态和蒙特Perdido冰川,西班牙比利牛斯的最近演化

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摘要

This work combines very detailed measurements from terrestrial laser scanner (TLS), ground-based interferometry radar (GB-SAR) and ground-penetrating radar (GPR) to diagnose current conditions and to analyse the recent evolution of the Monte Perdido Glacier in the Spanish Pyrenees from 2011 to 2017. Thus, this is currently one of the best monitored small glacier (<0.5 km(2)) worldwide. The evolution of the glacier surface was surveyed with a Us evidencing an important decline of 6.1 +/- 0.3 m on average, with ice losses mainly concentrated over 3 years (2012, 2015 and 2017). Ice loss is unevenly distributed throughout the study period, with 10-15 m thinning in some areas while unchanged areas in others. GB-SAR revealed that areas with higher ice losses are those that are currently with no or very low ice motion. In contrast, sectors located beneath the areas with less ice loss are those that still exhibit noticeable ice movement (average 2-4.5 cm d(-1) in summer, and annual movement of 9.98 ma(-1) from ablation stakes data). GPR informed that ice thickness was generally <30 m, though locally 30-50 m. Glacier thinning is still accelerating and will lead to extinction of the glacier over the next 50 years.
机译:这项工作结合了地面激光扫描仪(TLS),地面干涉测量雷达(GB-SAR)和地面穿透雷达(GPR)的详细测量,以诊断当前条件,并分析西班牙语中蒙特Perdido冰川的最近演变从2011年到2017年的比利牛斯。因此,这是全球最佳被监控的小冰川(<0.5公里(2))之一。调查冰川表面的演变,我们平均过6.1 +/- 0.3米的重要下降,冰损主要集中在3年(2012年,2015年和2017年)。在整个研究期间,冰丢失不均匀,在某些地区,在其他地区减少了10-15米,而其他地区则在其他地区。 GB-SAR透露,冰损较高的地区是目前没有或非常低的冰运动的地区。相比之下,位于冰损失下方的区域下方的扇区是仍然表现出明显的冰运动(夏季平均2-4.5cmd(-1),以及从消融赌注数据中的9.98 mA(-1)的年移动)。 GPR通知冰厚度通常<30米,虽然局部30-50米。冰川变薄仍在加速,并将导致未来50年的冰川灭绝。

著录项

  • 来源
    《Journal of Glaciology》 |2019年第249期|共16页
  • 作者单位

    CSIC Inst Pirena Ecol Avda Montanana 1005 Zaragoza 50059 Spain;

    CSIC Inst Pirena Ecol Avda Montanana 1005 Zaragoza 50059 Spain;

    CTTC CERCA Av CF Gauss 7 E-08860 Castelldefels Barcelona Spain;

    Univ Extremadura Dept Fis Aplicada Escuela Politecn Caceres 10071 Spain;

    Univ Politecn Madrid Dept Matemat Aplicada Tecnol Informac &

    Comunicac ETSI Telecomunicac Av Complutense 30 ES-28040 Madrid Spain;

    Univ Politecn Madrid Dept Matemat Aplicada Tecnol Informac &

    Comunicac ETSI Telecomunicac Av Complutense 30 ES-28040 Madrid Spain;

    CTTC CERCA Av CF Gauss 7 E-08860 Castelldefels Barcelona Spain;

    Natl Council Res Italy Res Inst Hydrogeol Protect Geohazard Monitoring Grp Turin Italy;

    Univ Zaragoza Escuela Politecn Super Huesca Crta Cuarte S-N Huesca 22071 Spain;

    CSIC Inst Pirena Ecol Avda Montanana 1005 Zaragoza 50059 Spain;

    Univ Valladolid Dept Geog Valladolid Spain;

    CSIC Inst Pirena Ecol Avda Montanana 1005 Zaragoza 50059 Spain;

    CSIC Inst Pirena Ecol Avda Montanana 1005 Zaragoza 50059 Spain;

    Delegac Terr AEMET Spanish State Meteorol Agcy Ar Paseo Canal 17 Zaragoza 50007 Spain;

    Meteo France CNRS CNRM CEN UMR 3589 Grenoble France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冰川;
  • 关键词

    glacier monitoring; ground-penetrating radar; remote sensing;

    机译:冰川监测;地面渗透雷达;遥感;

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