蔡嘉仪,苗世光,李炬,潘昱冰,权建农,程志刚. 2020. 基于激光云高仪反演全天边界层高度的二次曲线拟合法的建立[J]. 气象学报, (0):-, doi:10.11676/qxxb2020.056
基于激光云高仪反演全天边界层高度的二次曲线拟合法的建立
A Two-step Ideal Curve Fitting Method for Retrieving Full-day Planetary Boundary Layer Height Based on Ceilometer
投稿时间:2019-09-05  修订日期:2020-04-29
DOI:10.11676/qxxb2020.056
中文关键词:  激光云高仪  二次曲线拟合法  边界层高度  对流边界层高度  稳定边界层高度  残留层高度
英文关键词:Ceilometer  Two-step ideal curve fitting method  Planetary boundary layer height  Convective boundary layer height  Stable boundary layer height  Residual layer height
基金项目:国家自然科学基金项目(编号:41805011)和青年北京学者计划
作者单位E-mail
蔡嘉仪 中国气象科学研究院 jycai@ium.cn 
苗世光 北京城市气象研究院 sgmiao@ium.cn 
李炬 北京城市气象研究院 ybpan@ium.cn 
潘昱冰 北京城市气象研究院 jycai@ium.cn 
权建农 北京城市气象研究院 jnquan@ium.cn 
程志刚 北京城市气象研究院 zgcheng@ium.cn 
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中文摘要:
      大气边界层高度是天气、气候、大气环境研究中的一个重要参数,然而尚缺少基于激光雷达探测系统反演全天边界层高度的有效方法。本文利用北京朝阳站、大兴站的激光云高仪数据,首先评估了梯度法、标准偏差法、曲线拟合法和小波协方差法反演边界层高度的适用性和局限性,发现梯度法容易受环境噪声的影响,曲线拟合法稳定性较好,但在夜间弱湍流条件下会将残留层高度误判为夜间边界层高度。在此基础上,本文提出二次曲线拟合法,将一天中边界层结构划分为白天的对流边界层、夜间的残留层和稳定边界层,通过用不同的理想曲线对其进行二次拟合,获取一天中边界层高度的连续变化。将二次曲线拟合法的反演结果与基于L波段探空雷达的位温梯度法的探测结果进行比较,结果表明:两者相关系数为0.91,验证了二次曲线拟合法的可行性与激光云高仪探测边界层高度的应用潜力。采用该方法反演2017年5月—6月朝阳站与大兴站边界层高度,对比发现:城区特殊的下垫面性质使朝阳站日间对流边界层发展更早,边界层高度更高,全天朝阳站边界层高度的变化范围在308m—1391m,大兴站在197m—1302m。
英文摘要:
      Planetary boundary layer height (PBLH) is an important parameter in the study of weather,climate and atmospheric environment. However,there is no effective method to retrieve PBLH of the whole day based on lidar system. In this paper,the applicability and limitation of Gradient method (GRD),Standard Deviation method (STD),Ideal Curve Fitting method (ICF) and Wavelet Covariance Transform method (WCT) for inversion of PBLH are evaluated by using ceilometer data from Chaoyang and Daxing stations in Beijing. It is found that GRD is susceptible to environmental noise and ICF has preferable stability,but the latter would mistake residual layer height for PBLH at night when turbulence is weak. On this basis,this paper establishes a Two-step Ideal Curve Fitting method (2-S ICF),which divides the structure of planetary boundary layer into convective boundary layer in day,and residual layer and stable boundary layer at night. Through two-step fitting with different ideal curves,continuous variations of PBLH can be obtained throughout the day. The inversion results of 2-S ICF are compared with those of the potential temperature gradient method based on L-band sounding radar. The results show that the correlation coefficient of the two methods is 0.91,which verifies the feasibility of 2-S ICF and the application potential of the ceilometer in detecting PBLH. PBLHs of Chaoyang Station and Daxing Station are inverted from May to June 2017 by using this method. It is found that convective boundary layer increases more rapidly in daytime and PBLH is higher in Chaoyang Station because of the influence of underlying surface''s characteristics in urban area. The PBLH ranges of Chaoyang Station and Daxing Station throughout the day are 308m—1391m and 197m—1302m, respectively.
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