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Using MODIS Normalized Difference Vegetation Index to monitor seasonal and inter-annual dynamics of wetland vegetation in the Great Artesian Basin: a baseline for assessment of future changes in a unique ecosystem

机译:利用mODIs归一化差异植被指数监测大自流盆地湿地植被的季节和年际动态:评估独特生态系统未来变化的基线

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摘要

The Great Artesian Basin mound springs (Australia) are unique wetland ecosystems of great significance. However, these unique ecosystems are endangered by anthropogenic water extraction. Relationships have been established between the vegetated wetland area and the discharge associated with individual springs, providing a potential means of monitoring groundwater flow using measurements of wetland area. Previous studies using this relationship to monitor Great Artesian Basin springs have used aerial photography or high resolution satellite images, giving sporadic temporal information. These "snapshot " studies need to be placed within a longer and more regular context to better assess changes in response to aquifer draw-downs. In this study, the potential of medium resolution MODIS Normalized Difference Vegetation Index data for studying the long-term and high frequency temporal dynamics of wetland vegetation at the Dalhousie Spring Complex of the GAB is tested. Photosynthetic activity within Dalhousie wetlands could be differentiated from surrounding land responses. The study showed good correlation between wetland vegetated area and groundwater flow, but also the important influence of natural species phenologies, rainfall, and human activity on the observed seasonal and inter-annual vegetation dynamic. Declining trends in the extent of wetland areas were observed over the 2000– 2009 period followed by a return of wetland vegetation since 2010. This study underlined the need to continue long-term medium resolution satellite studies of the Great Artesian Basin as these data provide a good understanding of variability within the wetlands, give temporal context for less frequent studies and a strong baseline for assessment of future changes.
机译:大自流盆地的土墩泉(澳大利亚)是具有重要意义的独特湿地生态系统。但是,这些独特的生态系统受到人为提取水的威胁。在植被湿地面积和与各个泉水相关的流量之间建立了关系,这为使用湿地面积的测量值监测地下水流量提供了一种潜在的手段。以前使用这种关系来监测大自流盆地温泉的研究已经使用了航空摄影或高分辨率卫星图像,从而提供了零星的时间信息。这些“快照”研究需要放在更长和更规则的背景下,以更好地评估因含水层下降而引起的变化。在这项研究中,测试了中分辨率MODIS归一化植被指数数据在研究GAB达尔豪西春季复合体中湿地植被的长期和高频时间动态方面的潜力。 Dalhousie湿地内的光合作用活动可以与周围的土地反应区分开。该研究表明湿地植被面积与地下水流量之间具有良好的相关性,但也表明了自然物种物候,降雨和人类活动对观测到的季节性和年际植被动态的重要影响。在2000年至2009年期间,观察到湿地面积范围呈下降趋势,随后从2010年开始恢复了湿地植被。这项研究强调,有必要继续对大自流盆地进行长期中分辨率卫星研究,因为这些数据提供了很好地了解湿地内的变化,为较少的研究提供时间背景,并为评估未来的变化提供坚实的基线。

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    Petus C.; Lewis M.; White D.;

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  • 年度 2012
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