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Growing season water balance of an inner alpine Scots pine (Pinus sylvestris L.) forest

机译:内高山赤松(Pinus sylvestris L.)森林的生长季节水分平衡

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We estimated components of the water cycle of a 150-year-old Pinus sylvestris forest in an inner Alpine dry valley of the Tyrol, Austria throughout five growing seasons. Forest canopy transpiration (TC) was measured by sap flow measurements scaled to the stand canopy level. Estimates of understory transpiration and forest floor evaporation (ETU) were derived from the soil water budget method, while interception (I) was modelled. Growing season cumulative evapotranspiration (ET = TC + ETU + I) varied between 256 and 322 mm or 51 to 79% of the growing season precipitation. The contribution of TC, ETU, and I to ET were 33, 40 and 27% respectively. Although these values of each layer (evapo)-transpiration are in good agreement with studies carried out in other European Scots pine forests, our estimated growing season total forest water use (Ttot = Tc + ETu) of 200-244 mm is at the lower end of values reported for coniferous forest ecosystems, and thus reflects an adaptation to the low shallow soil water availability. We conclude that Scots pine forests in inner alpine dry valleys are able to cope with high evaporative demand, even when shallow soil water availability is limited.
机译:我们估算了整个五个生长季节中,奥地利蒂罗尔州内高山干旱谷中有150年历史的樟子松森林水循环的组成部分。通过根据树冠水平进行的树液流量测量来测量林冠层蒸腾量(TC)。根据土壤水量预算方法估算林下蒸腾量和林地蒸发量(ETU),并对截留量(I)进行建模。生长季的累积蒸散量(ET = TC + ETU + I)在256至322 mm之间变化,占生长季降水量的51%至79%。 TC,ETU和I对ET的贡献分别为33%,40%和27%。尽管每层(蒸发)蒸腾量的这些值与其他欧洲苏格兰松树林中进行的研究非常吻合,但我们估计的生长季节总用水量(Ttot = Tc + ETu)为200-244 mm,较低针叶林生态系统的报告值的末端,因此反映了对土壤浅水供应量低的适应。我们得出的结论是,即使在土壤浅水供应有限的情况下,内高山干旱谷地的苏格兰松树林也能够应付高蒸发需求。

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