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Ecohydrology Bearings-Invited Commentary Ecohydrology in a human-dominated landscape

机译:生态水文学在人类主导的景观中引人注目的生态水文学

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As the earth becomes a quilt of managed patches, ecohydrologists need to move from describing to predicting the consequences of human activities, using knowledge to improve human well-being. We highlight three current opportunities in ecohydrology. The first is the need for stronger research in arid and semi-arid ecosystems, where water is scarce and a tight coupling exists between hydrology and ecology. The second is to build better predictive frameworks for understanding the consequences of vegetation change. The new framework we propose here combines landscape connectivity, through recharge and discharge dynamics, with global climate. In systems where annual precipitation and evapotranspiration are similar, the evapotranspirative differences of altered vegetation can quickly tip the water balance between positive and negative, fundamentally altering water flows and biogeochemistry. The third opportunity is to use simplified agricultural systems to build and test ecohydrological theory. Such systems function under the same biophysical rules but are often better controlled and replicated than more natural ecosystems. Resolving today's controversies requires sound ecohydrological science in a world where the influences of people are increasingly universal.
机译:随着地球变成被管理的斑块的被子,生态水文学家需要从描述到预测人类活动的后果,使用知识来改善人类的福祉。我们重点介绍了生态水文学当前的三个机遇。首先是需要在干旱和半干旱的生态系统中进行更深入的研究,因为干旱和半干旱的生态系统缺水并且水文与生态之间存在紧密的联系。第二是建立更好的预测框架,以了解植被变化的后果。我们在此提出的新框架将通过补给和排放的动态与全球气候联系起来。在年降水量和蒸散量相似的系统中,植被变化的蒸散量差异可以迅速使水的平衡在正负之间变化,从根本上改变水流量和生物地球化学。第三个机会是使用简化的农业系统来建立和检验生态水文学理论。这样的系统在相同的生物物理规则下运行,但通常比更多的自然生态系统得到更好的控制和复制。解决当今的争议需要在人类影响日益普遍的世界中建立健全的生态水文科学。

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