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Desert riparian forest colonization in the lower reaches of Tarim River based on remote sensing analysis

机译:基于遥感分析的塔里木河下游荒漠河岸森林定殖

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摘要

The ecological water conveyance project that pipes water from Daxihaizi reservoir to lower reaches of Tarim River has been implemented ten times since 2000. After ecological water conveyance, restoration has taken place for vegetation along the dried-up lower reaches of the Tarim River. The changes of vegetation fluctuated yearly due to ecological water conveyance. In order to reveal the detailed process of vegetation changes, remote sensing images from 1999 to 2010 were all classified individually into vegetated and non-vegetated areas using the soil-adjusted vegetation index threshold method. Then inter-annual changes of vegetation over a period of 12 years were obtained using a post-classification change detection technique. Finally, spatial-temporal changes distribution of vegetation cover and its response to ecological water conveyance were analyzed. The results indicate: (1) vegetation area increased by 8.52 % overall after ecological water conveyance. Vegetation between 2003 and 2004 increased dramatically with 45.87 % while vegetation between 2002 and 2003 decreased dramatically with 17.83 %. (2) Vegetation area gain is greater than vegetation loss during 1999-2000, 2001-2002, 2003-2004 and 2009-2010 periods. Although vegetation restoration is obvious from 1999 to 2010, vegetation loss also existed except for the periods above. It indicates that vegetation restoration fluctuated due to ecological water conveyance. (3) Spatial distribution of vegetation restoration presented "strip" distribution along the river and group shaper in the lower terrain area, while spatial distribution of vegetation loss mainly located in the upper reaches of river and area far away from the river. (4) Vegetation restoration area had a positive relative with total ecological water conveyance volume. The scheme and season of ecological water conveyance had also influenced the vegetation restoration. The vegetation change process monitoring, based on continuous remote sensing data, can provide the spatial-temporal distribution of vegetation cover in a large-scale area and scientific evidences for implementing ecological water conveyance in the lower Tarim River.
机译:自2000年以来,从大溪海子水库向塔里木河下游输送水的生态输水工程已实施了十次。生态输水后,塔里木河干lower的下游植被得到了恢复。植被的变化由于生态水的输送而每年波动。为了揭示植被变化的详细过程,使用土壤调整植被指数阈值方法将1999年至2010年的遥感图像分别分为植被区和非植被区。然后使用分类后变化检测技术获得了12年期间植被的年际变化。最后,分析了植被覆盖的时空变化分布及其对生态输水的响应。结果表明:(1)生态输水后植被总面积增加了8.52%。 2003年至2004年之间的植被显着增加了45.87%,而2002年至2003年之间的植被显着减少了17.83%。 (2)1999-2000年,2001-2002年,2003-2004年和2009-2010年期间,植被面积增加大于植被丧失。尽管从1999年到2010年植被恢复明显,但除上述时期外,还存在植被损失。这表明植被恢复因生态水输送而波动。 (3)植被恢复的空间分布呈低带状沿河和整形器呈“带状”分布,而植被流失的空间分布主要分布在河的上游和远离河的区域。 (4)植被恢复面积与生态总输水量呈正相关。生态输水的方案和季节也影响了植被的恢复。基于连续遥感数据的植被变化过程监测,可以提供大面积植被覆盖的时空分布,为塔里木河下游实施生态输水提供科学依据。

著录项

  • 来源
    《Environmental earth sciences 》 |2014年第10期| 4579-4589| 共11页
  • 作者单位

    Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, UEruemqi 830011, China,Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China,University of Chinese Academy of Sciences, Beijing 100049, China;

    Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, UEruemqi 830011, China;

    Land Resource College, China West Normal University, Nanchong 637002, China;

    Xinjiang Key Laboratory of Oasis Ecology, College of Resource and Environment Sciences, Xinjiang University, UEruemqi 830046, China;

    College of Geographic Science and Tourism, Xinjiang Normal University, UEruemqi 830054, China;

    Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China;

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

    Vegetation colonization; Remote sensing; The lower reaches of Tarim River; Ecological water conveyance; Change detection;

    机译:植被定植;遥感;塔里木河下游;生态水输送;变更检测;

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