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首页> 外文期刊>Journal of the air & waste management association >Directional Biases in Back Trajectories Caused by Model and Input Data
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Directional Biases in Back Trajectories Caused by Model and Input Data

机译:模型和输入数据引起的后向轨迹中的方向偏差

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摘要

Back trajectory analyses are often used for source attribution estimates in visibility and other air quality studies. Several models and gridded meteorological datasets are readily available for generation of trajectories. The Big Bend Regional Aerosol and Visibility Observational (BRAVO) tracer study of July to October 1999 provided an opportunity to evaluate trajectory methods and input data against tracer concentrations, particulate data, and other source attribution techniques. Results showed evidence of systematic biases between the results of different back trajectory model and meteorological input data combinations at Big Bend National Park during the BRAVO. Most of the differences were because of the choice of meteorological data used as input to the trajectory models. Different back trajectories also resulted from the choice of trajectory model, primarily because of the different mechanisms used for vertical placement of the trajectories. No single model or single meteorological data set was found to be superior to the others, although raw-insonde data alone are too sparse in this region to be used as the only input data, and some combinations of model and input data could not be used to reproduce known attributions of tracers and simulated sulfate.
机译:在可见性和其他空气质量研究中,通常将后向轨迹分析用于源归因估计。几个模型和网格化的气象数据集可随时用于生成轨迹。 1999年7月至1999年10月的大弯区域气溶胶和能见度观测器(BRAVO)示踪剂研究提供了一个机会,可以评估示踪剂浓度,微粒数据和其他来源归因技术的轨迹方法和输入数据。结果表明,在BRAVO期间,大弯国家公园的不同后向轨迹模型的结果与气象输入数据组合之间存在系统偏差。大多数差异是由于选择了气象数据作为轨迹模型的输入。轨迹模型的选择也导致了不同的后向轨迹,这主要是因为用于轨迹的垂直放置的机制不同。尽管没有单独的原始探空数据在该地区太稀疏以致无法用作唯一的输入数据,并且没有使用模型和输入数据的某些组合,但是没有发现任何单一的模型或单一的气象数据集优于其他数据集。重现示踪剂和模拟硫酸盐的已知属性。

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