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Using remote sensing to characterize riparian vegetation: A review of available tools and perspectives for managers

机译:使用遥感来表征河岸植被:对经理的可用工具和视角审查

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摘要

Riparian vegetation is a central component of the hydrosystem. As such, it is often subject to management practices that aim to influence its ecological, hydraulic or hydrological functions. Remote sensing has the potential to improve knowledge and management of riparian vegetation by providing cost-effective and spatially continuous data over wide extents. The objectives of this review were twofold: to provide an overview of the use of remote sensing in riparian vegetation studies and to discuss the transferability of remote sensing tools from scientists to managers. We systematically reviewed the scientific literature (428 articles) to identify the objectives and remote sensing data used to characterize riparian vegetation. Overall, results highlight a strong relationship between the tools used, the features of riparian vegetation extracted and the mapping extent. Very high-resolution data are rarely used for rivers longer than 100 km, especially when mapping species composition. Multi-temporality is central in remote sensing riparian studies, but authors use only aerial photographs and relatively coarse resolution satellite images for diachronic analyses. Some remote sensing approaches have reached an operational level and are now used for management purposes. Overall, new opportunities will arise with the increased availability of very high-resolution data in understudied or data-scarce regions, for large extents and as time series. To transfer remote sensing approaches to riparian managers, we suggest mutualizing achievements by producting open-access and robust tools. These tools will then have to be adapted to each specific project, in collaboration with managers.
机译:河岸植被是加氢系统的中心部件。因此,旨在影响其生态,液压或水文功能的管理实践。遥感具有通过在广泛范围内提供成本效益和空间连续数据来改善河岸植被的知识和管理。本综述的目标是双重:概述了河岸植被研究中的遥感,并讨论了科学家对管理者的遥感工具的可转移性。我们系统地审查了科学文献(428篇文章),以确定用于表征河南植被的目标和遥感数据。总体而言,结果突出了所用工具之间的强有力的关系,提取了河岸植被的特征和绘图范围。非常高分辨率的数据很少用于超过100公里的河流,尤其是在映射物种组成时。多时刻是遥感河岸研究中的中央,但作者仅使用空中照片和相对粗糙的分辨率图像进行历时分析。一些遥感方法已达到操作级别,现在用于管理目的。总体而言,新的机会将在深入或数据稀缺地区增加非常高分辨率数据的可用性增加,适用于大型范围和时间序列。要将遥感方法转移到河岸管理者,我们建议通过销售开放访问和强大的工具来相互化成就。然后,这些工具必须与管理人员合作适应每个特定项目。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第1期|110652.1-110652.19|共19页
  • 作者单位

    ULiege Gembloux Agro-Bio Tech TERRA Teaching and Research Centre (Forest is Life). 2 Passage des Deportes 5030 Gembloux Belgium;

    INRAE centre de Lyon Grenoble Auvergne Rhone-Alpes. 5 Rue de la Doua 69100 Villeurbanne France;

    Universite Rennes 2 LETG Rennes Place du Recteur Henri Le Moal 35043 Rennes cedex France;

    ULiege Gembloux Agro-Bio Tech TERRA Teaching and Research Centre (Forest is Life). 2 Passage des Deportes 5030 Gembloux Belgium;

    ULiege Gembloux Agro-Bio Tech TERRA Teaching and Research Centre (Forest is Life). 2 Passage des Deportes 5030 Gembloux Belgium;

    ULiege Gembloux Agro-Bio Tech TERRA Teaching and Research Centre (Forest is Life). 2 Passage des Deportes 5030 Gembloux Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Riparian forest; Alluvial forest; Floodplain vegetation; LiDAR; UAV; Satellite;

    机译:河岸森林;冲积森林;洪泛区植被;丽娜;无人机;卫星;

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