生态修复工程效果遥感评价——以永定河流域为例

IF 4.1 2区 环境科学与生态学 Q1 ECOLOGY
Liang Zhai , Siyuan Cheng , Huiyong Sang , Wenhan Xie , Lin Gan , Tengbo Wang
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引用次数: 19

摘要

生态修复已上升为国家战略工程,成为实现生态文明建设的重要途径。评价是衡量生态修复工程有效性的重要手段,为生态修复决策和生态系统管理提供可靠依据。本文基于遥感技术重访时间短、监测范围大、空间分辨率高等优势,提出流域生态修复效果遥感评价方法,对流域生态修复工程实施效果进行监测,从技术上检查是否达到了修复前设定的预期目标。永定河综合生态修复工程自2016年开始实施,是京津冀协同发展的首个重点生态推进工程。本文选择2015年和2020年作为永定河生态修复工程的前后年份。研究对象为永定河流域罗坡岭水库至大宁水库的河岸带。在获取并处理遥感影像后,利用ZY-3影像通过人机交互解译获取土地覆盖数据,利用Landsat影像检索NDVI数据。在此基础上,计算研究区水资源、水生态和生态功能8个指标的变化,评价生态修复工程效果。结果表明,研究区基本实现了生态水量的维持,形成了永定河生态廊道,有效增强了生态功能,改善了水环境。通过验证遥感评价方法的可行性,为相关决策者和规划者提供基于遥感数据和技术的生态修复工程效果的有效评价方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remote sensing evaluation of ecological restoration engineering effect: A case study of the Yongding River Watershed, China

Ecological restoration has been risen to a national strategic project for China and become an significant way to realize ecological civilization construction. As an important way to measure the effectiveness of ecological restoration engineering, the corresponding evaluation provides a reliable basis for ecological restoration decision-making and ecosystem management. Based on remote sensing technology with the advantages of short revisit time, large monitoring range, high spatial resolution, this paper proposes a remote sensing evaluation method of watershed ecological restoration effect, so as to monitor the implementation effect of ecological restoration engineering in the watershed and technically check whether the expected goals set before the restoration are achieved. The comprehensive ecological restoration engineering of Yongding River has been implemented since 2016, and it was the first focus of the coordinated development of Beijing-Tianjin-Hebei region to make advances in ecology. In this paper, year 2015 and 2020 were selected as the before and the after the ecological restoration engineering of Yongding River. The research object was the riparian zone from Luopoling Reservoir to Daning Reservoir in Yongding River Watershed. After obtaining and processing remote sensing images, ZY-3 images were used to obtain land cover data by means of human-computer interactive interpretation, and Landsat images were used to retrieve NDVI data. Based on these data, the changes of the eight indicators of water resources, water ecology and ecological function in the study area were calculated to evaluate the ecological restoration engineering effect. The results showed that the study area has basically realized the maintenance of ecological water quantity, formed the ecological corridor of Yongding River, and effectively enhanced the ecological function and improved the water environment. By verifying the feasibility of remote sensing evaluation method, this paper could provide relevant decision makers and planners with an effective evaluation method for the ecological restoration engineering effect based on remote sensing data and technology.

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来源期刊
Ecological Engineering
Ecological Engineering 环境科学-工程:环境
CiteScore
8.00
自引率
5.30%
发文量
293
审稿时长
57 days
期刊介绍: Ecological engineering has been defined as the design of ecosystems for the mutual benefit of humans and nature. The journal is meant for ecologists who, because of their research interests or occupation, are involved in designing, monitoring, or restoring ecosystems, and can serve as a bridge between ecologists and engineers. Specific topics covered in the journal include: habitat reconstruction; ecotechnology; synthetic ecology; bioengineering; restoration ecology; ecology conservation; ecosystem rehabilitation; stream and river restoration; reclamation ecology; non-renewable resource conservation. Descriptions of specific applications of ecological engineering are acceptable only when situated within context of adding novelty to current research and emphasizing ecosystem restoration. We do not accept purely descriptive reports on ecosystem structures (such as vegetation surveys), purely physical assessment of materials that can be used for ecological restoration, small-model studies carried out in the laboratory or greenhouse with artificial (waste)water or crop studies, or case studies on conventional wastewater treatment and eutrophication that do not offer an ecosystem restoration approach within the paper.
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