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Improvement of 6–15 Day Precipitation Forecasts Using a Time-Lagged Ensemble Method 被引量:4
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作者 JIE Weihua WU Tongwen +2 位作者 WANG Jun LI Weijing LIU Xiangwen 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2014年第2期293-304,共12页
A time-lagged ensemble method is used to improve 6-15 day precipitation forecasts from the Beijing Climate Center Atmospheric General Circulation Model,version 2.0.1.The approach averages the deterministic predictions... A time-lagged ensemble method is used to improve 6-15 day precipitation forecasts from the Beijing Climate Center Atmospheric General Circulation Model,version 2.0.1.The approach averages the deterministic predictions of precipitation from the most recent model run and from earlier runs,all at the same forecast valid time.This lagged average forecast (LAF) method assigns equal weight to each ensemble member and produces a forecast by taking the ensemble mean.Our analyses of the Equitable Threat Score,the Hanssen and Kuipers Score,and the frequency bias indicate that the LAF using five members at time-lagged intervals of 6 h improves 6-15 day forecasts of precipitation frequency above 1 mm d-1 and 5 mm d-1 in many regions of China,and is more effective than the LAF method with selection of the time-lagged interval of 12 or 24 h between ensemble members.In particular,significant improvements are seen over regions where the frequencies of rainfall days are higher than about 40%-50% in the summer season; these regions include northeastern and central to southern China,and the southeastem Tibetan Plateau. 展开更多
关键词 time-lagged ensemble system lagged average forecast 6-15 day forecasts PRECIPITATION
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环境空气污染监测车与空气监测站比对方法可行性研究 被引量:3
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作者 施俊岳 陈小燕 《计量与测试技术》 2019年第5期24-27,共4页
本文以笔者单位曾井小区点位小时均值、日均值、15日均值与空气质量应急监测车监测结果对比为例,通过对空气质量监测站与溯源后的环境空气污染监测车多因子监测结果的比对,采用“2、8、2、8”小时均值比对、日均值配对t检验、15日平均... 本文以笔者单位曾井小区点位小时均值、日均值、15日均值与空气质量应急监测车监测结果对比为例,通过对空气质量监测站与溯源后的环境空气污染监测车多因子监测结果的比对,采用“2、8、2、8”小时均值比对、日均值配对t检验、15日平均浓度误差等统计方法,从多角度论证,建立一种新型的空气站比对方法完善空气站的评价体系。 展开更多
关键词 监测车 空气站 比对 “2、8、2、8”小时均值 日均值配对t检验 15日平均浓度误差
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