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Integrating dendrochronology and geomatics to monitor natural hazards and landscape changes

机译:整合树木和地理学来监测自然灾害和景观变化

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摘要

The monitoring of natural hazards is of extreme importance in the areas of Italy where there are high hydrogeological and avalanche risks. Despite the fact that records of past events are sometimes available, some of their data are often incomplete and show that the monitoring and mapping of these phenomena are never enough to avoid damage.We present the results of different studies where an integrated approach has been used by combining geomatics and dendrochronology techniques. In particular, we refer to case studies concerning avalanches, debris flows, natural reforestation in Italy and riverbed path changes in Albania. The position of all the plants sampled for dendrochronology was taken by GPS (Global Positioning System). The cartographic information used in these studies was provided by official sources from public organisations or processed by extracting them from aerial photographs or satellite imagery. With the Geographic Information System, it was possible to spatialise and analyse the information from dendrochronological sampling through the creation of multi-temporal morphological and potential risk maps showing the effects of the phenomena on forest cover. The GIS software used in these studies are GRASS, QGIS and IDRISI. The results showed that avalanches, debris flow, riverbed and landscape change can be studied effectively by integrating geomatics and dendrochronological techniques. This integration enabled spatial and temporal modelling, including the reconstruction of paths and volumes of past phenomena. The analysis of growth disturbances over time also enabled the reconstruction of the frequency of avalanches and debris flow activity over the last 50 years and, in some areas, over the last century. A detailed analysis of one of the avalanche tracks provided interesting results regarding the reconstruction of avalanche dynamics. Analysis of scars on buried stems of Pinus sylvestris also provided interesting results in terms of debris volume estima
机译:在意大利地质和雪崩风险的情况下,对自然灾害的监测极为重要。尽管有时候过去事件的记录有时可用,但他们的一些数据通常不完整,并表明这些现象的监测和映射永远不会避免损坏。我们介绍了使用综合方法的不同研究的结果通过组合地理和树枝状学技术。特别是,我们指的是有关雪崩,碎片流动,意大利自然重新造林的案例研究和阿尔巴尼亚的河床道路。用于树枝状物学的所有植物的位置由GPS(全球定位系统)拍摄。这些研究中使用的制图信息由公共组织的官方来源提供,或通过从空中照片或卫星图像中提取它们来处理。通过地理信息系统,可以通过创建多时间形态和潜在风险地图来分析Dentronological抽样中的信息,所述多时间形态学和潜在风险地图显示出森林覆盖现象的影响。这些研究中使用的GIS软件是草,QGIS和IDRISI。结果表明,通过整合地理和树木技术,可以有效地研究雪崩,碎片流量,河床和景观变化。这种集成使能空间和时间建模,包括重建过去现象​​的路径和卷。随着时间的推移分析增长障碍也使得在过去50年中,在过去的50年里,在过去的50年里,在过去的50年里,在过去的世纪,在过去的世纪。对其中一个雪崩轨道的详细分析提供了关于雪崩动态的重建的有趣结果。对松植渣的埋地茎的疤痕分析还为碎片量估计提供了有趣的结果

著录项

  • 来源
    《Applied Geomatics 》 |2019年第1期| 共14页
  • 作者单位

    Dipartimento di Ingegneria Civile Ambientale e Meccanica Università di Trento Via Mesiano 77 I-38123 Trento Italy;

    Dipartimento di Ingegneria Civile Ambientale e Meccanica Università di Trento Via Mesiano 77 I-38123 Trento Italy;

    Dipartimento di Ingegneria Civile Ambientale e Meccanica Università di Trento Via Mesiano 77 I-38123 Trento Italy;

    Dipartimento di Ingegneria Civile Ambientale e Meccanica Università di Trento Via Mesiano 77 I-38123 Trento Italy;

    Dipartimento di Ingegneria Civile Ambientale e Meccanica Università di Trento Via Mesiano 77 I-38123 Trento Italy;

    Dipartimento di Ingegneria Civile Ambientale e Meccanica Università di Trento Via Mesiano 77 I-38123 Trento Italy;

    Dipartimento di Ingegneria Civile Ambientale e Meccanica Università di Trento Via Mesiano 77 I-38123 Trento Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学、地球科学 ;
  • 关键词

    GIS; Dendrochronology; Avalanche; Debris flow; Riverbed change; Forests;

    机译:GIS;树突状;雪崩;碎片流动;河床变化;森林;

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