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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Technical note: Boundary layer height determination from lidar for improving air pollution episode modeling: development of new algorithm and evaluation
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Technical note: Boundary layer height determination from lidar for improving air pollution episode modeling: development of new algorithm and evaluation

机译:技术说明:从激光雷达确定边界层高度以改善空气污染情节建模:开发新算法和评估

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pstrongAbstract./strong Predicting air pollution events in the low atmosphere over megacities requires a thorough understanding of the tropospheric dynamics and chemical processes, involving, notably, continuous and accurate determination of the boundary layer height (BLH). Through intensive observations experimented over Beijing (China) and an exhaustive evaluation of existing algorithms applied to the BLH determination, persistent critical limitations are noticed, in particular during polluted episodes. Basically, under weak thermal convection with high aerosol loading, none of the retrieval algorithms is able to fully capture the diurnal cycle of the BLH due to insufficient vertical mixing of pollutants in the boundary layer associated with the impact of gravity waves on the tropospheric structure. Consequently, a new approach based on gravity wave theory (the cubic root gradient method CRGM) is developed to overcome such weakness and accurately reproduce the fluctuations of the BLH under various atmospheric pollution conditions. Comprehensive evaluation of CRGM highlights its high performance in determining BLH from lidar. In comparison with the existing retrieval algorithms, CRGM potentially reduces related computational uncertainties and errors from BLH determination (strong increase of correlation coefficient from 0.44 to 0.91 and significant decreases of the root mean square error from 643 to 142span class="thinspace"/spanm). Such a newly developed technique is undoubtedly expected to contribute to improving the accuracy of air quality modeling and forecasting systems./p.
机译:> >摘要。要预测特大城市低层大气中的空气污染事件,需要对对流层动力学和化学过程有透彻的了解,尤其是要连续且准确地确定边界层高度(BLH) 。通过对北京(中国)进行的密集观测和对BLH测定中应用的现有算法的详尽评估,发现了持续的关键限制,特别是在污染事件期间。基本上,在气溶胶负荷较高的弱热对流下,由于重力波对流层结构的影响,边界层中污染物的垂直混合不充分,因此没有一种检索算法能够完全捕获BLH的昼夜循环。因此,开发了一种基于重力波理论的新方法(立方根梯度法CRGM)来克服这种弱点并准确地再现BLH在各种大气污染条件下的波动。 CRGM的综合评估突出了其在激光雷达中确定BLH的高性能。与现有的检索算法相比,CRGM可以减少BLH确定带来的相关计算不确定性和错误(相关系数从0.44显着增加到0.91,均方根误差从643显着减少到142 class =“ thinspace”> m)。无疑,这种新开发的技术将有助于提高空气质量建模和预报系统的准确性。

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