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Determination of the optimal ecological water conveyance volume for vegetation restoration in an arid inland river basin, northwestern China

机译:中国西北地区干旱内陆河流河流域植被恢复最优生态水输送体积

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摘要

Overexploitation of water resources has led to severe ecological degradation and even desertification in some arid inland river basins, northwestern China. To alleviate or restore the degraded vegetation ecosystem, ecolog-ical water conveyance (EWC) has become an important and effective measure. Scientific assessment of the im-pact of EWC on vegetation restoration and determination of the corresponding optimal EWC volume (EWCV) are important to formulate rational ecological water management In this study, long time series normalized dif-ference vegetation index (NDVI) was used to extract the restored vegetation area in Qingtu Lake area, a terminal lake in inland Shiyang River basin, northwestern China. The relationship between restored vegetation coverage and EWC was explored to determine the optimal EWCV. The restored vegetation area (RVA) increased dramat-ically in the first five years and became stable from 2016. The time lag of the response of RVA increase to EWC was about 2 years. A bell-shaped function between RVA and groundwater depth was obtained based on the results from Unmanned Aerial Vehicle (UAV) and micro terrain of the lake area. Based on the fitted function, five ground-water depth thresholds were obtained. The optimal groundwater depth in the hydrometric station was 2.91 ± 0.09 m for the maximal RVA (17.08 ± 3.25 km~2). A polynomial function between the yearly EWCV and ground-water depth was developed and the EWCV thresholds corresponding to the groundwater depth thresholds were estimated. The optimal EWCV into Qingtu Lake was 2224.4 × 10~4 m~3 for the maximal RVA. The correspondingly optimal EWCV from Hongyashan Reservoir was 3271.4 × 10~4 m~3. The spatial distribution patterns of remotely sensed water surface and NDVI suggested that expanding the water-receiving area of conveyed water was useful to improve the vegetation growth. This study provides a reference for assessing the impact of EWC on vegetation restoration and determining the correspondingly optimal EWCV in arid inland river basins.
机译:在中国西北部的一些干旱的内陆河流盆地,水资源的过度消耗导致了严重的生态退化甚至荒漠化。为了减轻或恢复退化的植被生态系统,Ecolog-Icol水输送(EWC)已成为一个重要而有效的措施。科学评估EWC对植被恢复和相应最佳EWC体积(EWCV)的测定是在本研究中制定理性生态水管理的重要性,使用了很长的时间序列常规的巨大植被指数(NDVI)中国西北部内阳河流域的终端湖中提取青潭地区的恢复植被区。探索了恢复植被覆盖范围与EWC之间的关系来确定最佳EWCV。恢复的植被区(RVA)在前五年中增加了剧集,从2016年开始稳定.RVA对EWC的响应的时间滞后约为2年。基于无人机(UAV)和湖区微地形的结果获得了RVA和地下水深度之间的钟形功能。基于拟合功能,获得了五个浇水深度阈值。对于最大RVA,液压车站的最佳地下水深度为2.91±0.09米(17.08±3.25 km〜2)。开发了每年EWCV和地下水深度之间的多项式功能,估计对应于地下水深度阈值的EWCV阈值。最佳EWCV进入青潭湖为最大RVA的2224.4×10〜4 m〜3。洪山山储层的相应最佳EWCV为3271.4×10〜4 m〜3。远程感测水面和NDVI的空间分布图案表明,扩大输送水的水接收面积可用于改善植被生长。本研究提供了评估EWC对植被恢复的影响的参考,并确定干旱内陆河流域的相应最佳EWCV。

著录项

  • 来源
    《Science of the total environment》 |2021年第20期|147775.1-147775.10|共10页
  • 作者单位

    Hubei Key Laboratory of Yangtze River Basin Environmental Aquatic Science School of Environmental Studies &State Key Laboratory of Biogeology and Environmental Geology China University of Geosciences Wuhan 430074 China;

    Hubei Key Laboratory of Yangtze River Basin Environmental Aquatic Science School of Environmental Studies &State Key Laboratory of Biogeology and Environmental Geology China University of Geosciences Wuhan 430074 China;

    Hubei Key Laboratory of Yangtze River Basin Environmental Aquatic Science School of Environmental Studies &State Key Laboratory of Biogeology and Environmental Geology China University of Geosciences Wuhan 430074 China;

    Hubei Key Laboratory of Yangtze River Basin Environmental Aquatic Science School of Environmental Studies &State Key Laboratory of Biogeology and Environmental Geology China University of Geosciences Wuhan 430074 China;

    College of Resources and Environment Huazhong Agricultural University Wuhan 430070 China;

    College of Hydrology and Water Resources Hohai University Nanjing 210098 China;

    Hubei Key Laboratory of Yangtze River Basin Environmental Aquatic Science School of Environmental Studies &State Key Laboratory of Biogeology and Environmental Geology China University of Geosciences Wuhan 430074 China;

    Hubei Key Laboratory of Yangtze River Basin Environmental Aquatic Science School of Environmental Studies &State Key Laboratory of Biogeology and Environmental Geology China University of Geosciences Wuhan 430074 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ecological water conveyance; Groundwater depth; Vegetation restoration; Northwestern China; Remote sensing;

    机译:生态水输送;地下水深;植被恢复;中国西北部;遥感;

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