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Evaluation of the stomatal conductance formulation in the EMEP ozone deposition model for Picea abies

机译:云杉云杉EMEP臭氧沉积模型中气孔导度公式的评估

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摘要

It is widely acknowledged that the possible impacts of ozone on forest trees are more closely related to ozone flux through the stomata than to external ozone exposure. However, the application of the flux approach on a European scale requires the availability of appropriate models, such as the European Monitoring and Evaluation Programme (EMEP) ozone deposition model, for estimating ozone flux and cumulative ozone uptake. Within this model stomatal conductance is the key variable, since it determines the amount of ozone absorbed by the leaves. This paper describes the suitability of the existing EMEP ozone deposition model parameterisation and formulation to represent stomatal behaviour determined from field measurements on adult Norway spruce (Picea abies (L.) Karst.) trees in the Central European Alps. Parameters affecting maximum stomatal conductance (e.g. seasonal phenology, needle position, needle age, nutrient deficiency and ozone itself) and stomatal response functions to temperature, irradiance, vapour pressure deficit, and soil water content are investigated. Finally, current limitations and possible alterations of the EMEP model will be discussed with respect to spatial scales of available input data for future flux modelling.
机译:众所周知,臭氧对森林树木的可能影响与通过气孔的臭氧通量比与外部臭氧暴露更紧密相关。但是,在欧洲范围内应用通量方法需要使用适当的模型,例如欧洲监测和评估计划(EMEP)臭氧沉积模型,以估算臭氧通量和累积臭氧吸收量。在此模型中,气孔电导率是关键变量,因为它决定了叶片吸收的臭氧量。本文介绍了现有EMEP臭氧沉积模型参数化和公式化的适用性,以表示通过对中欧阿尔卑斯山的成年挪威云杉(Picea abies(L.)Karst。)树进行野外测量而确定的气孔行为。研究了影响最大气孔导度的参数(例如季节性物候,针头位置,针头年龄,养分缺乏和臭氧本身)以及气孔对温度,辐照度,蒸气压赤字和土壤含水量的响应函数。最后,将针对可用通量模型的未来可用通量数据的空间尺度,讨论EMEP模型的当前局限性和可能的​​变化。

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