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首页> 外文期刊>Hydrology and Earth System Sciences >Large-scale vegetation responses to terrestrial moisture storage changes
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Large-scale vegetation responses to terrestrial moisture storage changes

机译:大型植被对陆地湿度储存变化的反应

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The normalised difference vegetation index (NDVI) is a useful tool for studying vegetation activity and ecosystem performance at a large spatial scale. In this study we use the Gravity Recovery and Climate Experiment (GRACE) total water storage (TWS) estimates to examine temporal variability of the NDVI across Australia. We aim to demonstrate a new method that reveals the moisture dependence of vegetation cover at different temporal resolutions. Time series of monthly GRACE TWS anomalies are decomposed into different temporal frequencies using a discrete wavelet transform and analysed against time series of the NDVI anomalies in a stepwise regression. The results show that combinations of different frequencies of decomposed GRACE TWS data explain NDVI temporal variations better than raw GRACE TWS alone. Generally, the NDVI appears to be more sensitive to interannual changes in water storage than shorter changes, though grassland-dominated areas are sensitive to higher-frequencies of water-storage changes. Different types of vegetation, defined by areas of land use type, show distinct differences in how they respond to the changes in water storage, which is generally consistent with our physical understanding. This unique method provides useful insight into how the NDVI is affected by changes in water storage at different temporal scales across land use types.
机译:归一化差异植被指数(NDVI)是一种在大型空间尺度下研究植被活动和生态系统性能的有用工具。在这项研究中,我们使用重力恢复和气候实验(Grace)总储水(TWS)估计,以检查澳大利亚全面的NDVI的时间变异性。我们的目标是展示一种新方法,揭示了植被覆盖在不同的时间分辨率下的水分依赖性。每月恩典的时间序列通过离散小波变换分解成不同的时间频率,并在逐步回归中分析NDVI异常的时间序列。结果表明,不同频率的分解恩典TWS数据的组合解释了比原始恩典TWS更好的NDVI时间变化。通常,NDVI似乎对储存的持续变化比较短的变化更敏感,尽管草地主导地区对储水变化的更高频率敏感。不同类型的植被,由土地利用类型的区域定义,表现出它们如何应对储水的变化,这通常与我们的身体理解一致。这种独特的方法提供了有用的深入了解NDVI如何受到土地使用类型的不同时间尺度的储水器变化的影响。

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