房佳蓓,女,bwin必赢教授,博士生导师。
主要从事海气相互作用动力学与气候预测研究,先后主持和参与包括国家重点研发计划课题、公益性行业专项课题、国家自然科学基金重点项目和国家自然科学基金创新群体项目在内的国家级科研项目10余项,发表论文30余篇,2006年获得教育部高等学校科学技 术奖自然科学一等奖,国家一流本科课程《地球流体力学》负责人。在“中纬度海气相互作用动力学理论”方面取得了创新成果。通过系统的观测、模拟和理论研究,建立了包含大气瞬变涡旋强迫的中纬度不稳定海气相互作用理论。该理论揭示了中纬度海温异常影响大气的瞬变强迫途径,提出了中纬度海气相互作用的正反馈机制,解释了中纬度海气系统年代际振荡发展和维持的成因,刻画了中纬度不稳定海气相互作用的物理图像,为理解中纬度气候变异成因和预测提供了重要动力学基础。参与完成的成果“基于最优可预测模态和异常相对倾向的气候预测关键技术与应用”在中国气象局2022年度组织的“十三五”以来气象科技成果评价中获得“优秀”等级。
受教育经历
2001/09-2006/01,bwin必赢,大气科学系,直博研究生/博士
1997/09-2001/07,bwin必赢,大气科学系,本科,学士
研究工作经历
2023/12-至今, bwin必赢,bwin必赢,教授,博士生导师
2008/12-2023/12,bwin必赢,bwin必赢,副教授,硕士生导师
2012/05-2013/04,夏威夷大学气象系,访问学者,访问金飞飞教授,开展合作研究
2006/04-2008/12,bwin必赢,大气科学系,讲师
主讲课程
本科生核心专业课 《地球流体力学》(国家一流本科课程,bwin必赢“百”层次优质课程)
本硕贯通课《地球流体力学》
发表文章
2024
Nie Jun, Jiabei Fang*, Xiu-Qun Yang, Qionhui Huang, 2024, Subseasonal relationship between the zonal oscillation of the Western Pacific Subtropical High and the South Asia High.Climate Dynamics, 62, 7293-7308.
Qionhui Huang, Jiabei Fang*, Lingfeng Tao, Xiu-qun Yang, 2024, Wintertime ocean–atmosphere interaction processes associated with the SST variability in the North Pacific subarctic frontal zone. Climate Dynamics, 62(2), 1159-1177.
Tao, L.*, Yang, X.-Q.*, Sun, L., Sun, X., Fang, J., Cai, D., Zhou, B., & Chen, H., 2024, Meridional path of ENSO impact on following early-Summer North Pacific climate. Geophysical Research Letters, 51, e2024GL111079.
Zhang, X., Sun, X., Yuan, S., Zhang, Z., Yang, X.-Q., & Fang, J., 2024, The interannual wintertime climate modes over mid-high latitude Eurasia and their climate impacts. Journal of Geophysical Research: Atmospheres, 129, e2023JD039764.
2023
Nie Jun, Jiabei Fang*, Xiu-Qun Yang, 2023, The mechanisms of the subseasonal zonal oscillation of the western Pacific subtropical high in 10–25-day period and 25–50-day period. Climate Dynamics. 60, 3485-3502.
Lingfeng Tao, Jiabei Fang*, Xiu-Qun Yang*, Xuguang Sun, Danping Cai, and Yu Wang, 2023, Role of North Atlantic tripole SST in mid-winter reversal of NAO, Geophysical Research Letters, 50, e2023GL103502.
Yujun He, Bin Wang, Jiabei Fang, Yongqian Yu et al., 2023, Constraint of Air-Sea Interaction Significant to Skillful Predictions of North Pacific Climate Variations. Journal of Climate, 36(17), 5941-5962.
Shengjie Chen, Xiu-Qun Yang*, Jiabei Fang, Linyuan Sun, Lingfeng Tao, Xiaozhuo Sang, and Manman Yin, 2023, Revisiting the East Asian summer monsoon structure: a combined effect of condensational heating and synoptic eddy activities, Climate Dynamics, 61, 3787-3803.
Wen Li, Xiu-Qun Yang*, Jiabei Fang, Lingfeng Tao, and Xuguang Sun, 2023, Asymmetric boreal summer intraseasonal oscillation events over the western North Pacific and their impacts on East Asian precipitation, Journal of Climate, 36(8), 2645-2661.
Lingfeng Tao, Xuguang Sun*, Xiu-Qun Yang*, Jiabei Fang, and Zhi-Qi Zhang, 2023, Effect of oceanic stochastic forcing on wintertime atmospheric decadal variability over midlatitude North Pacific, Journal of Geophysical Research – Atmospheres, 128(2), e2022JD037594.
Chu, C.; Yang, X.-Q.; Sun, X.; Ren, X.; Chang, E.K.M.; Fang, J.; Hu, H., 2023, Impacts of Strong El Niño–Southern Oscillation Events on Wintertime Northern Hemisphere Storm Tracks in Two Pacific Decadal Oscillation Phases during 1950–2010. Sustainability, 15, 16565
2022
Jiabei Fang, Lilan Chen, Xiu-Qun Yang*, 2022, Roles of vertical distributions of atmospheric transient eddy dynamical forcing and diabatic heating in midlatitude unstable air–sea interaction. Climate Dynamics, 58(1), 351-368.
Tao, L., J. Fang*, X.-Q. Yang*, X. Sun, & D. Cai, 2022, Midwinter Reversal of the Atmospheric Anomalies Caused by the North Pacific Mode-Related Air-Sea Coupling, Geophys. Res. Lett., 49(20), e2022GL100307, doi:10.1029/2022GL100307.
Nie Jun, Jiabei Fang*, Xiu-Qun Yang, 2022, The mechanisms of the subseasonal zonal oscillation of the western Pacific subtropical high in 10–25-day period and 25–50-day period. Climate Dynamics, online.
陆晓娟,房佳蓓*,杨修群,中国东部夏季季节内降水异常及其伴随的热带和中高纬度大气环流演变特征. 气象学报,2022, 80(1), 1-20.
Sang, X., Yang, X.-Q.*, Tao, L., Fang, J., Sun, X. Evaluation of synoptic eddy activities and their feedback onto the midlatitude jet in five atmospheric reanalyses with coarse versus fine model resolutions. Climate Dynamics,2022, 58, 1363-1381.
Xiaozhuo Sang, Xiu‑Qun Yang, Lingfeng Tao, Jiabei Fang, Xuguang Sun, Decadal changes of wintertime poleward heat and moisture transport associated with the amplified Arctic warming. Journal of Climate,2022, 58, pages 137–159.
Haibo Hu*, Rongrong Wang, Fei Liu, William Perrie, Jiabei Fang, Haokun Bai, Cumulative positive contributions of propagating MJO to the quick low-level atmospheric response during El Niño developing years, Climate Dynamics, 2022, 58, 569–590.
Hu Haibo*, Deng Yuheng, Fang Jiabei, Wang Rongrong, Mechanism of regional subseasonal precipitation in the extreme strong and weak years of East Asian summer monsoon subseasonal variation, Journal of Ocean University of China. 2022, 6, 1411-1427.
2021
林昊雄,房佳蓓*,胡海波,杨修群.中纬度瞬变涡旋活动对东亚夏季平均环流和降水的影响.气象科学,2021,41(6): 739-751.
王安英,房佳蓓*,杨修群,北半球夏季热带季节内振荡影响我国夏季降水的规律和预测方法,气象科学,2021,41(5): 606-616.
Linyuan Sun, Xiu-Qun Yang, Lingfeng Tao, Jiabei Fang, Xuguang Sun, Changing Impact of ENSO Events on the Following Summer Rainfall in Eastern China since the 1950s. Journal of Climate,2021, 34, 8105-8123.
王昱,杨修群*,孙旭光,房佳蓓,陶凌峰,张志琦,一种基于全球动力模式和SMART原理结合的统计降尺度区域季节气候预测方法,气象科学,41(5): 569-583.
2020
Lilan Chen, Jiabei Fang*, Xiu-Qun Yang*, Midlatitude unstable air‑sea interaction with atmospheric transient eddy dynamical forcing in an analytical coupled model. Climate Dynamics, 2020, 55:2557–2577.
Ran Zhang, Jiabei Fang*, Xiu-Qun Yang*, What Kinds of Atmospheric Anomalies Drive Wintertime North Pacific Basin-Scale Subtropical Oceanic Front Intensity Variation? J. Climate, 2020, 33 (16): 7011–7026.
Lingfeng Tao,Xiu-Qun Yang*, Jiabei Fang*, Xuguang Sun, PDO-Related Wintertime Atmospheric Anomalies over the Midlatitude North Pacific: Local versus Remote SST Forcing. J. Climate, 2020, 33 (16): 6989-7010.
Chen, F. F., Chen, Q., Hu, H., Fang, J., Bai, H. (2020). Synergistic effects of midlatitude atmospheric upstream disturbances and oceanic subtropical front intensity variability on western Pacific jet stream in winter. JGR-A,125, e2020JD032788.
任雪娟,房佳蓓,杨修群.我国东部夏季降水季节内振荡与低频大气环流演变特征分析.气象科学, 2020, 40(5), 686-696.
Before 2020
肖蓓,房佳蓓*,杨修群,气象科学,应用3种方法对降水在各尺度空间不均匀性的分离,气象科学,2013,33(6), 602-609
Ren Xuejuan, Yang Xiuqun, Zhou Tianjun, Fang Jiabei, Diagnostic Comparison of Wintertime East Asian Subtropical Jet and Polar-Front Jet: Large-Scale Characteristics and Transient Eddy Activities. ACTA METEOROLOGICA SINICA, 2011, 25, 21-33.
张璐,杨修群,汤剑平,房佳蓓,孙旭光,夏季长三角城市群热岛效应及其对大气边界层结构影响的数值模拟。气象科学,2011, 31(4),431-440.
李欣; 杨修群; 汤剑平; 孙旭光; 房佳蓓,WRF/NCAR模拟的夏季长三角城市群区域多城市热岛和地表能量平衡。气象科学,2011, 31(4), 441-450.
任雪娟,杨修群,周天军,房佳蓓,冬季东亚副热带急流与温带急流的比较分析:大尺度特征和瞬变扰动活动,气象学报,2010, 68(1), 1-11
邹用昌,杨修群,潘志祥,孙旭光,房佳蓓,廖玉芳:CO2倍增对我国东部极端降水的影响,气候变化研究进展,2008,Vol.4 No.2
Fang Jiabei, and Yang Xiuqun, The Role of Meridional Wind Stress in the Tropical Unstable Air-Sea Interaction. Journal of Tropical Meteorology, 2003, 9(1), 95-104.
房佳蓓,杨修群: 表面经向风应力在热带不稳定海气相互作用中的作用。 热带气象学报,2003, 19(1), 43-52。
获奖情况
1. 杨修群、谢倩、赵珊珊、容新尧、孙旭光、房佳蓓,厄尔尼诺相关的热带海气相互作用机理与季节可预报性研究,教育部高等学校科学技术奖自然科学一等奖,2006(排名6/6)。
2. 江苏省气象学会基础研究成果奖一等奖,2021(排名2/7)。
3. “基于最优可预测模态和异常相对倾向的气候预测关键技术与应用”在中国气象局2022年度组织的“十三五”以来气象科技成果评价中获得“优秀”等级(排名3/9)。
4. 第二届“气象出版杯”全国大气科学类专业青年教师教学交流与竞赛一等奖
5.江苏省高校微课程教学比赛二等奖,2020(排名1/3)
6. 《地球流体力学》教学团队入选全国气象教学团队,2022(排名2/9)。
承担项目
主持
1. 国家重点研发计划项目课题“中纬度海-气系统在北极-热带关联中的作用”(2022YFF0801702), 2022.12~2027.11。
2. 国家重点研发计划项目课题“夏季BSISO北传及其对东亚气候影响的机理和预测方法”(2018YFC1505902), 2018.12~2021.12。
3. 国家公益性行业(气象)科研专项项目课题“研究我国季节内低频强降水/强降温过程关键特征和监测指标”(GYHY201406022),2014.1-2016.12。
4. 国家自然科学基金面上项目“天气尺度瞬变涡旋强迫在东亚夏季风环流形成中的作用”(41875086),2019.1-2022.12。
5. 国家自然科学基金面上项目“中纬度北太平洋海洋锋区变异对大气环流的影响”(41375074),2014.1-2017.12
6. 国家自然科学基金青年项目“中纬度大气对SST异常导致的热源异常响应的机理研究”(40805025),2009.1-2011.12。
作为主要骨干先后参与
1. 国家973计划项目“我国东部沿海城市带的气候效应及对策研究”(2018YFC1505902), 2010.1~2014.10。
2. 国家自然科学基金委创新群体项目“东亚气候变异动力学”(41621005),2017.1-2022.12。
3. 国家自然科学基重点项目“大气瞬变涡旋反馈在中纬度海气耦合动力过程中的作用”(41875086),2014.1-2018.12。
4. 国家自然科学基金重点项目“20世纪70年代末我国东部旱涝年代际转型的成因研究”(4073093),2008.1-2011.12。
5. 国家公益性行业(气象)科研专项项目“大气低频变化规律及其在气象预测中的应用研究”(GYHY200806004),2008.10-2011.9。