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Simulating smoke transport from wildland fires with a regional-scale air quality model: Sensitivity to spatiotemporal allocation of fire emissions

机译:使用区域尺度的空气质量模型模拟野火引发的烟气传输:对火灾时空分布的敏感性

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Air quality forecasts generated with chemical transport models can provide valuable information about the potential impacts of fires on pollutant levels. However, significant uncertainties are associated with fire-related emission estimates as well as their distribution on gridded modeling domains. In this study, we explore the sensitivity of fine particulate matter concentrations predicted by a regional-scale air quality model to the spatial and temporal allocation of fire emissions. The assessment was completed by simulating a fire-related smoke episode in which air quality throughout the Atlanta metropolitan area was affected on February 28, 2007. Sensitivity analyses were carried out to evaluate the significance of emission distribution among the model's vertical layers, along the horizontal plane, and into hourly inputs. Predicted PM_(2.5) concentrations were highly sensitive to emission injection altitude relative to planetary boundary layer height. Simulations were also responsive to the horizontal allocation of fire emissions and their distribution into single or multiple grid cells. Additionally, modeled concentrations were greatly sensitive to the temporal distribution of fire-related emissions. The analyses demonstrate that, in addition to adequate estimates of emitted mass, successfully modeling the impacts of fires on air quality depends on an accurate spatiotemporal allocation of emissions.
机译:通过化学运输模型生成的空气质量预测可以提供有关火灾对污染物水平的潜在影响的有价值的信息。但是,与火灾相关的排放估算及其在网格建模域中的分布存在重大不确定性。在这项研究中,我们探索了由区域尺度的空气质量模型预测的细颗粒物浓度对火灾排放的时空分布的敏感性。通过模拟与火灾有关的烟雾事件来完成评估,该事件在2007年2月28日影响了亚特兰大都会区的整个空气质量。进行了敏感性分析,以评估模型垂直层和水平层之间排放分布的重要性。飞机,并按小时输入。相对于行星边界层高度,预测的PM_(2.5)浓度对发射注入高度高度敏感。模拟还响应于火势排放的水平分配及其在单个或多个网格单元中的分布。此外,模拟浓度对与火有关的排放的时间分布非常敏感。分析表明,除了对排放质量进行足够的估算外,成功地模拟火灾对空气质量的影响还取决于排放物的准确时空分配。

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