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A Drought Indicator based on Ecosystem Responses to Water Availability: The Normalized Ecosystem Drought Index

机译:基于生态系统对水资源可用性的响应的干旱指标:规范化生态系统干旱指数

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摘要

Drought is one of the most destructive natural disasters causing serious damages to human society, and studies have projected more severe and widespread droughts in the coming decades associated with the warming climate. Although several drought indices have been developed for drought monitoring, most of them were based on large scale environmental conditions rather than ecosystem transitional patterns to drought. Here, we propose using the ecosystem function oriented Normalized Ecosystem Drought Index (NEDI) to quantify drought severity, loosely related to Sprengel’s and Liebig’s Law of the Minimum for plant nutrition. Extensive eddy covariance measurements from 60 AmeriFlux sites across 8 IGBP vegetation types were used to validate the use of NEDI. The results show that NEDI can reasonably capture ecosystem transitional responses to limited water availability, suggesting that drought conditions detected by NEDI are ecosystem function oriented. The wildly used Palmer Drought Severity Index (PDSI), on the other hand, does not have a clear relationship with ecosystem responses to drought conditions because ecosystem adaptation ability is not considered in PDSI calculation.
机译:干旱是造成人类社会严重破坏的最具破坏力的自然灾害之一,研究预测,在未来几十年中,与气候变暖有关的干旱将更加严重和普遍。尽管已经开发了几种干旱指数来进行干旱监测,但其中大多数是基于大规模环境条件,而不是生态系统向干旱的过渡方式。在这里,我们建议使用面向生态系统功能的标准化生态系统干旱指数(NEDI)来量化干旱严重程度,这与Sprengel和Liebig的植物营养最低定律有松散的关系。来自8种IGBP植被类型的60个AmeriFlux站点的广泛涡度协方差测量被用于验证NEDI的使用。结果表明,NEDI可以合理地捕捉到有限的水可利用的生态系统过渡响应,表明NEDI检测到的干旱条件是生态系统功能导向的。另一方面,由于PDSI计算中未考虑生态系统适应能力,因此,野生使用的Palmer干旱严重性指数(PDSI)与生态系统对干旱条件的响应没有明确的关系。

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