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首页> 外文期刊>Scientific reports. >Assessing arid Inland Lake Watershed Area and Vegetation Response to Multiple Temporal Scales of Drought Across the Ebinur Lake Watershed
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Assessing arid Inland Lake Watershed Area and Vegetation Response to Multiple Temporal Scales of Drought Across the Ebinur Lake Watershed

机译:评估ARID INLAND LAKES流域区域和植被反应,对eBinur湖流域干旱的多个颞级

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The Ebinur Lake watershed is an important ecological barrier for environmental changes in the Junggar Basin in Xinjiang Uygur Autonomous Region (XUAR). Due to the tremendous changes in the underlying surface environment of the watershed in the past few decades, the watershed has become a typical region of ecological degradation. Drought affects the surface dynamics and characterizes the regional dry and wet environments, while the dynamic variation in lakes and vegetation are indicators of dynamic changes in land surfaces. Thus, a quantitative assessment of the response of lakes and vegetation to drought conditions at multiple temporal scales is critical for assessing the potential impacts of regional climate change on terrestrial ecosystems and ecological restoration. The standardized precipitation evapotranspiration index (SPEI), the spectral water index (NDWI) and the normalized difference vegetation index (NDVI) were used to analyse the evolution of drought, the variation in lake surface area and the sustainable variation in vegetation. Furthermore, we quantitatively evaluated the response patterns of vegetation to droughts of multiple temporal scales (1-, 3-, 6-, 12-, 24-month). The conclusions showed that (1) overall, the area of Ebinur Lake experienced drastic fluctuations, and the lake area has decreased significantly since 2003, with a dynamic area of 817.63 kmsup2/sup in 2003 and 384.60 kmsup2/sup in 2015, and the lake area had shrank severely. (2) The interannual variation of wet and dry changed alternately during the observation period, and persistent drought events occurred from 2006 to 2010 across the Ebinur Lake watershed. (3) The vegetation area of cultivated land expanded continuously across the watershed, and the grassland degraded severely. (4) The changes in lake surface area are significantly correlated with the inflow water volume (correlation coefficient?=?0.64, P??0.01). (5) The vegetation of different terrestrial ecosystems exhibited heterogeneous responses to multiple temporal scales of drought in different seasons. The percentage was 72.78% of the total area, which showed a correlation between vegetation and drought conditions during the growing season period, and there were more impacts of drought on vegetation, with values as high as 64.33% of the area in summer, than those in other seasons.
机译:贝内尔湖流域是新疆维吾尔族自治区的准噶尔盆地的环境变化的重要生态障碍(XUAR)。由于过去几十年分水岭的潜在表面环境变化,流域已成为生态降解的典型区域。干旱影响了地表动态,其特征是区域干燥环境,而湖泊和植被的动态变化是陆地表面的动态变化。因此,在多个时间尺度下对湖泊和植被的响应的定量评估对于评估区域气候变化对陆地生态系统和生态修复的潜在影响至关重要。使用标准化沉淀蒸发散热指数(SPEI),光谱水指数(NDWI)和归一化差异植被指数(NDVI)分析干旱,湖面区域的变化以及植被的可持续变化。此外,我们量化地评估了植被的响应模式,以多个时间尺度的干旱(1-,3-,6-,12-,24个月)。结论表明(1)总体而言,Ebinur湖的面积经历了剧烈波动,自2003年以来,湖区的湖区已显着下降,2003年的动态面积为817.63 km 2 384.60 km 2 2015年,湖区严重萎缩。 (2)在观察期间交替改变湿润和干燥的持续变化,持续干旱事件发生在Ebinur Lake Shatershed之间的2006年至2010年。 (3)耕地植被面积在流域上不断扩大,草地严重降解。 (4)湖面区域的变化与流入水量显着相关(相关系数?= 0.64,P?<?0.01)。 (5)不同陆地生态系统的植被表现出不同季节干旱的多个时间鳞片的异质反应。占总面积的72.78%,植被和干旱条件之间的相关性,在不断增长的季节期间,植被对植被的影响更多,夏季占该地区的价值观高达64.33%在其他季节。

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