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Ecohydrologic separation of water between trees and streams in a Mediterranean climate

机译:地中海气候中树木和溪流之间的水生态水分离

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Water movement in upland humid watersheds from the soil surface to the stream is often described using the concept of translatory flow(1,2), which assumes that water entering the soil as precipitation displaces the water that was present previously, pushing it deeper into the soil and eventually into the stream(2). Within this framework, water at any soil depth is well mixed and plants extract the same water that eventually enters the stream. Here we present water-isotope data from various pools throughout a small watershed in the Cascade Mountains, Oregon, USA. Our data imply that a pool of tightly bound water that is retained in the soil and used by trees does not participate in translatory flow, mix with mobile water or enter the stream. Instead, water from initial rainfall events after rainless summers is locked into small pores with low matric potential until transpiration empties these pores during following dry summers. Winter rainfall does not displace this tightly bound water. As transpiration and stormflow are out of phase in the Mediterranean climate of our study site, two separate sets of water bodies with different isotopic characteristics exist in trees and streams. We conclude that complete mixing of water within the soil cannot be assumed for similar hydroclimatic regimes as has been done in the past(3,4).
机译:高地湿润小流域从土壤表面到溪流的水运动通常用平移流(1,2)的概念来描述(1,2),它假定水由于降水而进入土壤,从而取代了先前存在的水,将其推向更深处。并最终进入河流(2)。在此框架内,任何土壤深度的水都充分混合,植物提取出的水最终进入河流。在这里,我们展示了美国俄勒冈州喀斯喀特山脉一个小流域中各个水池的同位素数据。我们的数据表明,保留在土壤中并被树木使用的紧密结合的水不会参与平流,与流动水混合或进入河流。取而代之的是,在无雨的夏季之后,最初的降雨事件产生的水被锁定在基质潜力较低的小孔隙中,直到随后的干燥夏季蒸腾使这些孔隙排空。冬季的降雨并不能取代这种紧密相连的水。由于我们研究地点的地中海气候中蒸腾作用和暴雨流量不同步,因此树木和溪流中存在两组具有不同同位素特征的水体。我们得出的结论是,不能像过去那样在类似的水文气候条件下假设土壤中水的完全混合(3,4)。

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