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首页> 外文期刊>Progress in Physical Geography >Evaluating high-resolution remote sensing data for reconstructing the recent evolution of supra glacial debris
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Evaluating high-resolution remote sensing data for reconstructing the recent evolution of supra glacial debris

机译:评估高分辨率遥感数据,以重建最近的冰川碎屑的进化

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摘要

Over the last decades, the expansion of supraglacial debris on worldwide mountain glaciers has been reported. Nevertheless, works dealing with the detection and mapping of supraglacial debris and detailed analyses aimed at identifying the temporal and spatial trends affecting glacier debris cover are still limited. In this study, we used different remote sensing sources to detect and map the supraglacial debris cover, to analyze its evolution, and to assess the potential of different remote-sensed image data. We performed our analyses on the glaciers of Ortles-Cevedale Group (Stelvio Park, Italy), one of the most representative glacierized sectors of the European Alps. High-resolution airborne orthophotos (pixel size 0.5 m × 0.5 m) acquired during the summer season in the years 2003, 2007, and 2012 permitted to map in detail, with an error lower than ±5%, the supraglacial debris cover through a maximum likelihood classification. Our findings suggest that over the period 2003–2012, supraglacial debris cover increased from 16.7% to 30.1% of the total glacier area. On Forni Glacier we extended these quantification thanks to the availability of UAV (Unmanned Aerial Vehicle) orthophotos from 2014 and 2015 (pixel size 0.15 m × 0.15 m): this detailed analysis permitted to confirm debris is increasing on the glacier melting surface (+20.4%) and confirms the requirement of high-resolution data in debris mapping on Alpine glaciers. Finally, we also checked the suitability of medium-resolution Landsat ETM+ data and Sentinel 2 data to map debris in a typical Alpine glaciation scenario where small ice bodies (<0.5 km~(2)) are the majority. The results we obtained suggest that medium-resolution data are not suitable for a detailed description and evaluation of supraglacial debris cover in the Alpine scenario, nevertheless Sentinel 2 proved to be appropriate for a preliminary mapping of the main debris features.
机译:在过去的几十年中,据报道,在全球山冰川上的超丙基碎片的扩张。然而,处理对Supraglacial碎片的检测和测绘的作品以及旨在识别影响冰川碎片覆盖的时间和空间趋势的详细分析仍然有限。在这项研究中,我们使用不同的遥感源来检测和映射超透析碎片覆盖,分析其演进,并评估不同遥感图像数据的潜力。我们在欧洲山脉最具代表性的冰川化部门之一的奥特勒斯 - Cevedale集团(Stelvio Park,意大利)的冰川上进行了分析。在2003年,2007年夏季获得的高分辨率空气(像素大小0.5米×0.5米)在2003年,2007年和2012年允许详细地图地图,误差低于±5%,超自然碎片通过最大值覆盖可能性分类。我们的研究结果表明,在2003 - 2012年期间,超透碎片覆盖率从总冰川地区的16.7%增加到30.7%至30.1%。在Forni Glacier上,我们通过从2014年和2015年的UAV(无人机车辆)Orthophotos的可用性(像素尺寸0.15 m×0.15米)来扩展这些量化:允许确认碎屑的这种详细分析在冰川熔化表面上增加(+20.4 %)并确认在高山冰川上的碎片映射中的高分辨率数据要求。最后,我们还检查了中分辨率Landsat ETM +数据和Sentinel 2数据的适用性,以在典型的高山冰川场景中映射碎片,其中小冰体(<0.5 km〜(2))是大多数。我们获得的结果表明,中分辨率数据不适合在高山场景中的Supraglacial碎片覆盖的详细描述和评估,因此Sentinel 2证明是适当的主要碎片特征的初步绘图。

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