Start Time:2024-05-19 15:39(Asia/Shanghai)
Duration:8min
Session:S14 主题14、水文地球科学 »
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1. LIU, Z.-C., W. ZHOU*. Glo3DHydroClimEventSet(v1.0): A global-scale event set of hydroclimatic extremes detected with the 3D DBSCAN-based workflow (1951–2022) (一套基于3D DBSCAN框架的全球极端水文气候事件集). International Journal of Climatology [J], accepted on October 11, 2023. https://doi.org/10.1002/joc.8289.
2. LIU, Z.-C., W. ZHOU*. Global seasonal-scale meteorological droughts. Part II: Temperature Anomaly-based Classifications [全球季节气象干旱(2/2):温度异常的多样性]. Ocean-Land-Atmosphere Research [J], 2023:2;0017. https://spj.science.org/doi/10.34133/olar.0017. (SPJ,2022年度中国科技期刊卓越行动计划高起点新刊)
3. LIU, Z.-C., W. ZHOU*. Global seasonal-scale meteorological droughts. Part I: detection, metrics, and inland/coastal types [全球季节气象干旱(1/2):识别、测度及内陆/沿海型]. Ocean-Land-Atmosphere Research [J], 2023:2;0016. https://spj.science.org/doi/10.34133/olar.0016. (SPJ,2022年度中国科技期刊卓越行动计划高起点新刊)
4. LIU, Z.-C., W. ZHOU*, Yuan Yuan. 3D DBSCAN detection and parameter sensitivity of the 2022 Yangtze River summertime heatwave and drought (基于3D DBSCAN算法的长江全域2022年伏秋热旱事件识别及参数敏感性分析). Atmospheric and Oceanic Science Letters [J], 2022b, https://doi.org/10.1016/j.aosl.2022.100324.
5. LIU, Z.-C., W. ZHOU*, Ruhua Zhang, et al. Global-Scale Interpretable Drought Reconstruction Utilizing Anomalies of Atmospheric Dynamics (利用大气动力异常进行全球干旱可解释性重建). Journal of Hydrometeorology [J], 2022a, 23 (9), 1507-1524. https://doi.org/10.1175/JHM-D-22-0006.1
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2024
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2024
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