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GPS reflectometry study detecting snow height changes in the Southern Patagonia Icefield

机译:GPS反射测量技术研究,以检测巴塔哥尼亚南部冰原的雪高变化

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Southern Patagonia Icefield (SPI) glaciers have been retreating and shrinking at high rates in recent decades, significantly contributing to sea level rise. In spite of the importance of the SPI, very little is known about its mass balance apart from models lacking in situ validation, such as snow accumulation/ablation at high altitude. On the ground, snow changes are normally measured with stakes planted on snow frequently visited. Automation is possible by the use of ranging sensors, based on laser, radar or ultrasound, installed as part of automatic weather stations. In this study, we use for the first time in the SPI the technique of Global Positioning System Reflectometry (GPS-R) for measuring snow level changes. GPS-R uses observations from GPS satellites tracked by GNSS (Global Navigation Satellite Systems) ground stations. GNSS stations, typically installed according to geodetic network standards for geodynamics purposes (e.g., glacial isostatic rebound studies), inadvertently also record the signal reflected on the snow surface in the antenna surroundings. The GPS-R snow level variations were compared to an ultrasonic sensor installed nearby, operating simultaneously between October 2015 and February 2016. During this period the two datasets exhibited a correlation of 0.91 and an RMS of 17 cm, confirming that GNSS receivers can be used not only for geodetic purposes but also for snow accumulation/ablation monitoring in SPI.
机译:近几十年来,南部巴塔哥尼亚冰原(SPI)冰川一直在以高速率退缩和收缩,极大地促进了海平面的上升。尽管SPI很重要,但除了缺乏现场验证的模型(例如高海拔地区的积雪/消融)外,对其质量平衡知之甚少。地面上的积雪变化通常是通过在经常造访的积雪上种植木桩来测量的。通过使用作为自动气象站一部分安装的基于激光,雷达或超声波的测距传感器,可以实现自动化。在这项研究中,我们首次在SPI中使用了全球定位系统反射法(GPS-R)来测量雪位变化的技术。 GPS-R使用GNSS(全球导航卫星系统)地面站跟踪的GPS卫星的观测数据。 GNSS站通常是根据大地测量网络标准安装的,用于地球动力学目的(例如,冰川等静回弹研究),它们也会无意间记录天线周围雪面上反射的信号。将GPS-R雪位变化与附近安装的超声波传感器进行了比较,该传感器在2015年10月至2016年2月之间同时运行。在此期间,两个数据集的相关性为0.91,RMS为17 cm,这表明可以使用GNSS接收器不仅用于大地测量,还用于SPI中的积雪/消融监测。

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