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Modelling interception loss from evergreen oak Mediterranean savannas: Application of a tree-based modelling approach

机译:对常绿橡树地中海稀树草原的拦截损失进行建模:基于树的建模方法的应用

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In a previous study, it was shown that an isolated, fully saturated tree-crown behaves like a wet bulb, allowing evaporation of intercepted rainfall to be estimated by a simple diffusion equation for water vapour. This observation was taken as the basis for a new approach in modelling interception loss from savanna-type woodland, whereby the ecosystem evaporation is derived by scaling up the evaporation from individual trees, rather than by considering a homogeneous forest cover. Interception loss from isolated trees was estimated by combining the aforementioned equation for water vapour flux with Gash's analytical model. A new methodology, which avoids the subjectivity inherent in the Leyton method, was used for estimating the crown storage capacity. Modelling performance was evaluated against data from two Mediterranean savanna-type oak woodlands (montados) in southern Portugal. Interception loss estimates were in good agreement with observations in both sites. The proposed modelling approach is physically based, requires only a limited amount of data and should be suitable for the modelling of interception loss in isolated trees and savanna-type ecosystems.
机译:在先前的研究中,研究表明,一个孤立的,完全饱和的树冠的行为类似于湿球,可以通过简单的水蒸气扩散方程估算截留的降雨的蒸发量。该观察结果被用作对热带稀树草原林地截留损失进行建模的新方法的基础,该生态系统的蒸发是通过按比例增加单个树木的蒸发量而不是考虑均匀的森林覆盖率来实现的。通过将上述水蒸气通量方程式与Gash的分析模型结合起来,估计了离体树木的拦截损失。一种新的方法,避免了莱顿方法固有的主观性,用于估计冠的存储能力。根据葡萄牙南部两个热带稀树草原型橡木林地(蒙塔多斯)的数据对建模性能进行了评估。截获损失的估算值与两个站点的观测值都非常吻合。所提出的建模方法是基于物理的,仅需要有限数量的数据,并且应该适合于对孤立的树木和热带稀树草原型生态系统的拦截损失进行建模。

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