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Impact of including the plume rise of vegetation fires in numerical simulations of associated atmospheric pollutants

机译:在相关大气污染物的数值模拟中包括植被火灾的羽状上升的影响

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We investigate the importance of including in low-resolution atmospheric models the plume rise associated with the strong buoyancy of hot gases from vegetation fires. This sub-grid transport mechanism is simulated by embedding a 1D cloud resolving model, with appropriate lower boundary conditions, in each column of a 3D host model. Remote-sensing fire products are used in combination with a land use dataset for selection of appropriate fire properties. The host model provides the environmental conditions, and the plume rise is simulated explicitly. The final height of the plume is then used in the source emission field of the host model to determine the effective injection height, and the material emitted during the flaming phase is released at this height. Model results are compared with 500 hPa AIRS carbon monoxide ( CO) data for September 2002 and with CO aircraft profiles from the SMOCC campaign, showing the huge impact on model performance.
机译:我们调查了在低分辨率大气模型中包括与植被火灾产生的热气体强烈浮力相关的羽状上升的重要性。通过在3D主机模型的每一列中嵌入具有适当较低边界条件的1D云解析模型来模拟此子网格传输机制。遥感火灾产品与土地使用数据集结合使用,以选择适当的火灾属性。宿主模型提供了环境条件,并且显式模拟了羽状上升。然后,在主体模型的源发射场中使用羽流的最终高度来确定有效喷射高度,并且在燃烧阶段发射的材料在该高度释放。将模型结果与2002年9月的500 hPa AIRS一氧化碳(CO)数据以及SMOCC活动的CO飞机资料进行了比较,显示出对模型性能的巨大影响。

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