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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Interannual covariability between actual evapotranspiration and PAL and GIMMS NDVIs of northern Asia
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Interannual covariability between actual evapotranspiration and PAL and GIMMS NDVIs of northern Asia

机译:实际蒸散量与北亚PAL和GIMMS NDVI之间的年际协变性

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This study examined the covariability between interannual changes in the normalized difference vegetation index (NDVI) and actual evapotranspiration (ET). To reduce possible uncertainty in the NDVI time series, two NDVI datasets derived from Pathfinder AVHRR Land (PAL) data and the Global Inventory Monitoring and Modeling Studies (GIMMS) group were used. Analyses were conducted using data over northern Asia from 1982 to 2000. Interannual changes over 19 years in the PAL-NDVI and GIMMS-NDVI were compared with interannual changes in ET estimated from model-assimilated atmospheric data and gridded precipitation data. For both NDVI datasets, the annual maximum correlation with ET occurred in June, which is the beginning of the vegetation growing season. The PAL and GIMMS datasets showed a significant, positive correlation between interannual changes in the NDVI and ET over most of the vegetated land area in June. These results suggest that interannual changes in vegetation activity predominantly control interannual changes in ET in June. Based on analyses of interannual changes in temperature, precipitation, and the NDVI in June, the study area can be roughly divided into two regions, the warmth-dominated northernmost region and the wetness-dominated southern region, indicating that interannual changes in vegetation and the resultant interannual changes in ET are controlled by warmth and wetness in these two regions, respectively. (c) 2006 Elsevier Inc. All rights reserved.
机译:这项研究检查了标准化差异植被指数(NDVI)的年际变化与实际蒸散量(ET)之间的协变量。为了减少NDVI时间序列中的不确定性,使用了两个来自Pathfinder AVHRR Land(PAL)数据和Global Inventory Monitoring and Modeling Studies(GIMMS)组的NDVI数据集。使用1982年至2000年北亚地区的数据进行了分析。将PAL-NDVI和GIMMS-NDVI在19年中的年际变化与通过模型辅助大气数据和网格降水数据估算的ET的年际变化进行了比较。对于两个NDVI数据集,与ET的年最大相关性都发生在6月,这是植被生长季节的开始。 PAL和GIMMS数据集显示,6月大部分植被土地面积NDVI和ET的年际变化之间存在显着正相关。这些结果表明,植被活动的年际变化主要控制了6月ET的年际变化。根据6月份温度,降水和NDVI的年际变化分析,研究区域可大致分为两个区域,最温暖的最北区域和最潮湿的南部区域,表明植被和植被的年际变化。 ET的年际变化分别由这两个区域的温暖和潮湿控制。 (c)2006 Elsevier Inc.保留所有权利。

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