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Impacts of Virtual Train-based Atmospheric Vertical Profile Data Assimilation on the Forecast of the “21.7” Zhengzhou Rainstorm
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作者 CHENG Xing-hong XU Xiang-de +5 位作者 MA Si-ying LI Nan zhu dao-ming ZHOU Ming-fei MA Ying-li CHEN Bing 《Journal of Tropical Meteorology》 2025年第2期133-150,共18页
A record-breaking prolonged and extreme rainstorm occurred in Henan province,China during 18–23 July 2021.Global and regional numerical weather prediction(NWP)models consistently underpredicted both the 24-h accumula... A record-breaking prolonged and extreme rainstorm occurred in Henan province,China during 18–23 July 2021.Global and regional numerical weather prediction(NWP)models consistently underpredicted both the 24-h accumulated rainfall amount and the 1-h extreme precipitation in Zhengzhou city.This study examines the potential impacts of data assimilation(DA)of atmospheric vertical profiles based on the train-based mobile observation(MO)platforms on precipitation forecasts.The research involved assimilating virtual train-based air temperature(Ta),relative humidity(RH),U and V components of wind profile data based on the ERA5 reanalysis datasets into the Weather Research and Forecasting(WRF)model using three-dimensional variational(3DVar)method.Analysis confirms the reliability of Ta,RH,and wind speed(WS)profiles from ERA5 reanalysis datasets.The assimilation of virtual train-based moisture profiles enhanced the RH analysis field.Furthermore,the forecasts more accurately represented the coverage and intensity of the 6-hour and 24-hour accumulated precipitation,as well as areas with maximum rainfall durations exceeding 20 hours.The threat score(TS)and bias metrics for 6-h,12-h and 24-h accumulated precipitation forecasts showed marked improvement for heavy to torrential rain in Henan province,particularly in the Central and Northern regions(hereinafter referred to region CNH).The TS for 24-h accumulated precipitation forecasts at 50 and 100 mm rainfall levels increased by 0.17 and 0.18 in Henan province,and by 0.13 and 0.18 in region CNH.During the rainstorm period,water vapor content increased substantially,with enhanced moisture transport from south of Henan province to region CNH driven by southwesterly winds,accompanied by significantly strengthened updrafts.These improvement in water vapor and upward motion ultimately enhanced the forecasts of this extreme rainstorm event. 展开更多
关键词 extreme rainstorm forecasts atmospheric vertical profile virtual train-based mobile observation data assimilation
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模拟氮沉降对鄂西南贫营养泥炭地两种藓类植物生长与分解的影响 被引量:4
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作者 李小玲 朱道明 +7 位作者 余玉蓉 吴浩 牟利 洪柳 刘雪飞 卜贵军 薛丹 吴林 《植物生态学报》 CAS CSCD 北大核心 2023年第5期644-659,共16页
以泥炭藓属(Sphagnum)植物为优势种的贫营养泥炭地是陆地生态系统重要的碳汇,其优势植物的生长与分解动态关系着贫营养泥炭地碳汇潜力,但有关氮沉降对贫营养泥炭地优势藓类植物生长与分解的影响还存在很大争议,并且氮沉降对亚热带贫营... 以泥炭藓属(Sphagnum)植物为优势种的贫营养泥炭地是陆地生态系统重要的碳汇,其优势植物的生长与分解动态关系着贫营养泥炭地碳汇潜力,但有关氮沉降对贫营养泥炭地优势藓类植物生长与分解的影响还存在很大争议,并且氮沉降对亚热带贫营养泥炭地优势藓类植物生长与分解的研究鲜有报道。该研究以鄂西南贫营养泥炭地为研究对象,通过原位喷洒不同浓度的NH_(4)Cl溶液,采用生物量收割法和分解袋法,探讨模拟氮沉降对泥炭藓(S.palustre)与金发藓(Polytrichumcommune)生长及分解的影响。研究结果表明:(1)氮沉降对两种藓类植物生长高度与生物量均有明显的影响,且两种藓类植物生长存在一定的氮沉降阈值,约为3g·m^(-2)·a^(-1);(2)氮沉降对两种藓类植物生长影响程度不同,金发藓对氮沉降的响应灵敏度要大于泥炭藓;(3)高浓度氮沉降(6和12g·m^(-2)·a^(-1))抑制了泥炭藓分解,低浓度氮沉降(3g·m^(-2)·a^(-1))对泥炭藓分解的影响取决于分解时间,而所有浓度氮沉降均抑制了金发藓凋落物的分解;(4)分解1年以后,泥炭藓的最终质量残留率平均值为105.99%,金发藓的最终质量残留率平均值为70.79%,金发藓的分解速率远大于泥炭藓;(5)氮沉降对两种藓类凋落物化学元素含量与化学计量比有显著影响,且与分解时间密切相关。 展开更多
关键词 泥炭藓沼泽 分解 苔藓 氮输入 生产
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