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首页> 外文期刊>Forests >Vertical Ozone Gradients above Forests. Comparison of Different Calculation Options with Direct Ozone Measurements above a Mature Forest and Consequences for Ozone Risk Assessment
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Vertical Ozone Gradients above Forests. Comparison of Different Calculation Options with Direct Ozone Measurements above a Mature Forest and Consequences for Ozone Risk Assessment

机译:森林上方的垂直臭氧梯度。成熟林以上直接进行臭氧测量的不同计算方法的比较以及臭氧风险评估的后果

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The estimation of the ozone (O 3 ) stomatal dose absorbed by a forest is a crucial step for O 3 risk assessment. For this purpose, data on O 3 concentrations at the forest top-canopy are needed. However, O 3 is barely measured at that height, while more often it is measured at a lower height above a different surface, typically a grassland near to the forest edge. The DO3SE model for O 3 stomatal flux calculation estimates the top-canopy O 3 concentration in near neutral stability conditions. However, near-neutrality is quite rare in the field, particularly in southern Europe. In this work, we present a modification of the DO3SE gradient calculation scheme to include the atmospheric stability. The performance of the new calculation scheme was tested against the direct measurements above a mature forest. Different gradient estimation options were also tested and evaluated. These options include simplified gradient calculation schemes and the techniques of the tabulated gradients described in the UN/ECE Mapping Manual for O 3 risk assessment. The results highlight that the inclusion of the atmospheric stability in the DO3SE model greatly improves the accuracy of the stomatal dose estimation. However, the simpler technique of the tabulated gradients had the best performance on a whole-season time frame.
机译:估计森林吸收的臭氧(O 3)气孔剂量是O 3风险评估的关键步骤。为此,需要有关森林冠层中O 3浓度的数据。但是,在该高度几乎不能测量O 3,而通常在不同表面(通常是靠近森林边缘的草地)上方的较低高度测量O 3。用于O 3气孔通量计算的DO3SE模型可估算接近中性稳定条件的顶冠O 3浓度。但是,在该领域,特别是在南欧,几乎不存在中立现象。在这项工作中,我们提出了对DO3SE梯度计算方案的修改,以包括大气稳定性。针对成熟森林上方的直接测量结果,测试了新计算方案的性能。还测试和评估了不同的梯度估计选项。这些选项包括简化的梯度计算方案和UN / ECE O 3风险评估制图手册中描述的列表梯度技术。结果表明,在DO3SE模型中包括大气稳定性大大提高了气孔剂量估算的准确性。但是,列表渐变的较简单技术在整个季节的时间范围内都具有最佳性能。

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