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Planetary boundary layer height from CALIOP compared to radiosonde overChina

机译:与RADISONDE OVERCHINA相比,CALIOP的行星边界层高度

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Accurate estimation of planetary boundary layer height (PBLH) is key to air quality prediction, weather forecast, and assessment of regional climate change. The PBLH retrieval from the Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) is expected to complement ground-based measurements due to the broad spatial coverage of satellites. In this study, CALIOP PBLHs are derived from combination of Haar wavelet and maximum variance techniques, and are further validated against PBLHs estimated from ground-based lidar at Beijing and Jinhua. Correlation coefficients between PBLHs from ground- and satellite-based lidars are 0.59 at Beijing and 0.65 at Jinhua. Also, the PBLH climatology from CALIOP and radiosonde are compiled over China during the period from 2011 to 2014. Maximum CALIOP-derived PBLH can be seen in summer as compared to lower values in other seasons. Three matchup scenarios are proposed according to the position of each radiosonde site relative to its closest CALIPSO ground tracks. For each scenario, intercomparisons were performed between CALIOP- and radiosonde-derived PBLHs, and scenario?2 is found to be better than other scenarios using difference as the criteria. In early summer afternoon over 70?% of the total radiosonde sites have PBLH values ranging from 1.6 to 2.0?km. Overall, CALIOP-derived PBLHs are well consistent with radiosonde-derived PBLHs. To our knowledge, this study is the first intercomparison of PBLH on a large scale using the radiosonde network of China, shedding important light on the data quality of initial CALIOP-derived PBLH results.
机译:直行星边界层高度(PBLH)的准确估计是空气质量预测,天气预报和区域气候变化评估的关键。由于卫星的广泛空间覆盖率,预计来自具有正交偏振(Caliop)的云 - 气溶胶激光雷达的PBLH检索是可以补充基于基于地面的测量。在该研究中,卡利普PBLHS源自HAAR小波和最大方差技术的组合,并进一步验证了北京和金华的地基激光器估计的PBLH。基于地面和卫星的Lidars之间的PBLHS之间的相关系数为0.59,在金华和0.65。此外,来自Caliop和Radiosonde的PBLH气候学在2011年至2014年期间在中国编制。与其他季节的较低价值相比,夏天可以在夏季看到最大的Caliop衍生的PBLH。根据每个无线电电池位点相对于其最近的Calipso地面轨道提出三场比赛场景。对于每种情况,在Caliop和无线电探测器衍生的PBLHS之间进行了离法,并且发现场景?2比使用差异作为标准的其他场景更好。夏季初午70多岁以上的总无限制地点的百分比率为PBLH值,范围为1.6至2.0 km。总体而言,Caliop衍生的PBLHS与无线电源性PBLHS完全一致。为了我们的知识,本研究是PBLH的第一个与中国的辐射网络网络大规模的相互熟悉的,在初始卡利普衍生的PBLH结果的数据质量上脱落了重要的光线。

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