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利用免费遥感数据绘制潜在湿地、现有湿地和高效湿地图。

Mapping potential, existing and efficient wetlands using free remote sensing data.

机构信息

LETG UMR 6554 CNRS/Université de Rennes, Place du Recteur Henri Le Moal, 35000 Rennes, France.

LETG UMR 6554 CNRS/Université de Rennes, Place du Recteur Henri Le Moal, 35000 Rennes, France.

出版信息

J Environ Manage. 2019 Oct 1;247:829-839. doi: 10.1016/j.jenvman.2019.06.098. Epub 2019 Jul 20.

Abstract

Although wetlands remain threatened by human pressures and climate change, monitoring and managing them are challenging due to their high spatial and temporal dynamics within a fine-grained pattern. New satellite time-series at high temporal and spatial resolutions provide a promising opportunity to map and monitor wetlands. The objective of this study was to develop an operational method for managing valley bottom wetlands based on available free remote sensing data. The Potential, Existing, Efficient Wetlands (PEEW) approach was adapted to remote sensing data to delineate three wetland components: (1) potential wetlands, mapped from a digital terrain model derived from LiDAR data; (2) existing wetlands, delineated from land cover maps derived from Sentinel-1/2 time-series; and (3) efficient wetlands, identified from functional indicators (i.e. annual primary production, vegetation phenology, seasonality of carbon flux) derived from MODIS annual time-series. Soil and vegetation samples were collected in the field to calibrate and validate classification of remote sensing data. The method was applied to a 113 000 ha watershed in northwestern France. Results show that potential wetlands were successfully delineated (82% overall accuracy) and covered 21% of the watershed area, while 44% of existing wetlands had been lost. Small wetlands along headwater channels, which are considered as ordinary, cover 56% of wetland area in the watershed. Efficient wetlands were identified as contiguous pixels with a similar temporal functional trajectory. This method, based on free remote sensing data, provides a new perspective for wetland management. The method can identify sites where restoration measures should be prioritized and enables better understanding and monitoring of the influence of management practices and climate on wetland functions.

摘要

尽管湿地仍然受到人类压力和气候变化的威胁,但由于其在细粒度模式下具有高时空动态性,监测和管理湿地具有挑战性。新的高时空分辨率卫星时间序列为绘制和监测湿地提供了有希望的机会。本研究的目的是开发一种基于现有免费遥感数据管理谷底湿地的操作方法。适应性潜在、现有、有效湿地(PEEW)方法被应用于遥感数据,以划定三个湿地组成部分:(1)从激光雷达数据派生的数字地形模型中绘制的潜在湿地;(2)从 Sentinel-1/2 时间序列派生的土地覆盖图中划定的现有湿地;(3)从 MODIS 年度时间序列中得出的功能指标(即年初级生产力、植被物候、碳通量季节性)确定的有效湿地。在现场采集土壤和植被样本,以校准和验证遥感数据的分类。该方法应用于法国西北部一个 113000 公顷的流域。结果表明,成功划定了潜在湿地(总体精度为 82%),覆盖了流域面积的 21%,而 44%的现有湿地已经消失。沿着源头渠道的小湿地被认为是普通湿地,占流域湿地面积的 56%。有效湿地被确定为具有相似时间功能轨迹的连续像素。这种基于免费遥感数据的方法为湿地管理提供了新的视角。该方法可以确定需要优先考虑恢复措施的地点,并能够更好地了解和监测管理实践和气候对湿地功能的影响。

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