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Simple water balance modelling with few data - calibration and evaluation: investigations from a Danish Sitka spruce stand with a high interception loss

机译:仅需少量数据即可进行简单的水平衡建模-校准和评估:丹麦Sitka云杉林台的截获损失高的调查

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Simple evapotranspiration models with few data requirements and Penman reference evapotranspiration for grass (E_(ref)) limiting the actual evapotranspiration are often used to estimate chemical fluxes in ecosystems. The aim of this paper is to show how much the interception loss might exceed E_(ref) in a wind-exposed Danish Sitka spruce stand and to demonstrate the importance of the evaluation of model performance, here represented by throughfall measurements and chemical fluxes. Precipitation, throughfall, soil moisture and soil water chemistry were measured monthly for 1.5 years. Model input was daily precipitation, E_(ref), leaf area index, root distribution and plant available water. The model interception loss was calculated using an empirical relationship between precipitation and interception loss that was calibrated against the measured interception loss. Interception loss was found to be unusually high, on average 58% of precipitation, which was supported by measurements from two other years with interception losses from 62-68% of precipitation. Transpiration and evaporation from soil were constrained by E_(ref). The modelled percolation was compared to percolation calculated by a chloride mass balance based on measured values. The percolation was only about 20% of precipitation due to the exceptionally high interception loss, which exceeded E_(ref) by almost 50%. Therefore, in wind-exposed forest stands the interception loss should be modelled separately, as done here, and be calibrated on measured values.
机译:通常使用很少的数据要求的简单蒸发蒸腾模型和限制实际蒸发蒸腾的Penman参考蒸发蒸腾(E_(ref))来估算生态系统中的化学通量。本文的目的是显示在风雨中丹麦Sitka云杉架中拦截损失可能超过E_(ref)的程度,并展示评估模型性能的重要性,此处以穿透测量和化学通量表示。在1.5年中每月测量一次降水,穿透,土壤湿度和土壤水化学。模型输入为每日降水量,E_(ref),叶面积指数,根系分布和植物可用水。模型的拦截损失是使用降水量与拦截损失之间的经验关系计算得出的,该经验关系是针对测得的拦截损失进行校准的。发现拦截损失异常高,平均降水量为58%,这是由另外两年的测量结果支持的,降水量为62-68%。 E_(ref)限制了土壤的蒸腾和蒸发。将建模的渗滤与通过基于测量值的氯化物质量平衡计算的渗滤进行比较。由于异常高的拦截损失,渗滤仅约为降水量的20%,比E_(ref)高出将近50%。因此,在暴露于风的森林中,截留损耗应单独建模,如此处所述,并根据测量值进行校准。

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