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An Evaluation of Modeled Plume Injection Height with Satellite-Derived Observed Plume Height

机译:用卫星观测的羽流高度评估模拟的羽流注入高度

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Plume injection height influences plume transport characteristics, such as range and potential for dilution. We evaluated plume injection height from a predictive wildland fire smoke transport model over the contiguous United States (U.S.) from 2006 to 2008 using satellite-derived information, including plume top heights from the Multi-angle Imaging SpectroRadiometer (MISR) Plume Height Climatology Project and aerosol vertical profiles from the Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP). While significant geographic variability was found in the comparison between modeled plumes and satellite-detected plumes, modeled plume heights were lower overall. In the eastern U.S., satellite-detected and modeled plume heights were similar (median height 671 and 660 m respectively). Both satellite-derived and modeled plume injection heights were higher in the western U.S. (2345 and 1172 m, respectively). Comparisons of modeled plume injection height to satellite-derived plume height at the fire location (R2 = 0.1) were generally worse than comparisons done downwind of the fire (R2 = 0.22). This suggests that the exact injection height is not as important as placement of the plume in the correct transport layer for transport modeling.
机译:羽流注入高度会影响羽流传输特性,例如范围和稀释潜力。我们使用来自卫星的信息,包括多角度成像光谱辐射计(MISR)羽流高度气候项目和来自具有正交偏振(CALIOP)的云气激光雷达的气溶胶垂直剖面。尽管在模拟羽流和卫星探测羽流之间的比较中发现了显着的地理差异,但模拟羽流高度总体上较低。在美国东部,卫星探测和模拟的羽流高度相似(中位高度分别为671和660 m)。在美国西部,卫星衍生的羽状注入高度和模型羽状注入高度都较高(分别为2345和1172 m)。通常,在火场处将模型羽状喷射高度与卫星衍生的羽状高度进行比较(R 2 = 0.1)通常比在烈风下风处进行的比较(R 2 =)差0.22)。这表明准确的注入高度不如将羽流放置在用于传输建模的正确传输层中那么重要。

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