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Evaluation and Intercomparison of Five North American Dry Deposition Algorithms at a Mixed Forest Site

机译:混合林场中五种北美干沉降算法的评估和比较

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To quantify differences between dry deposition algorithms commonly used in North America, five models were selected to calculate dry deposition velocity ( V d ) for O 3 and SO 2 over a temperate mixed forest in southern Ontario, Canada, where a 5‐year flux database had previously been developed. The models performed better in summer than in winter with correlation coefficients for hourly V d between models and measurements being approximately 0.6 and 0.3, respectively. Differences in mean V d values between models were on the order of a factor of 2 in both summer and winter. All models produced lower V d values than the measurements of O 3 in summer and SO 2 in summer and winter, although the measured V d may be biased. There was not a consistent tendency in the models to overpredict or underpredict for O 3 in winter. Several models produced magnitudes of the diel variation of V d (O 3 ) comparable to the measurements, while all models produced slightly smaller diel variations than the measurements of V d (SO 2 ) in summer. A few models produced larger diel variations than the measurements of V d for O 3 and SO 2 in winter. Model differences were mainly due to different surface resistance parameterizations for stomatal and nonstomatal uptake pathways, while differences in aerodynamic and quasi‐laminar resistances played only a minor role. It is recommended to use ensemble modeling results for ecosystem impact assessment studies, which provides mean values of all the used models and thus can avoid too much overestimations or underestimations.
机译:为了量化北美地区常用的干沉降算法之间的差异,选择了五个模型来计算加拿大安大略省南部温带混交林中O 3和SO 2的干沉降速度(V d),该数据库具有5年的通量数据库以前已经开发过。在夏季,模型的表现要好于冬季,模型和测量值之间每小时V d的相关系数分别约为0.6和0.3。在夏季和冬季,模型之间的平均V d值差异约为2倍。所有模型产生的V d值均低于夏季的O 3和夏季和冬季的SO 2测量值,尽管测量的V d可能会有偏差。模型中没有一致的趋势来预测冬季O 3的过高或过低。几个模型产生的Vd(O 3)迪尔变化幅度与测量值相当,而所有模型产生的夏季Vd(SO 2)角值变化略小。某些模型产生的diel变化大于冬季O 3和SO 2的V d测量值。模型的差异主要是由于气孔和非气孔吸收途径的表面电阻参数设置不同,而空气动力学和准层流阻力的差异仅起很小的作用。建议将集合建模结果用于生态系统影响评估研究,该结果可提供所有使用模型的平均值,因此可以避免过高或过低的估计。

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