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从实验水文到水文系统模拟——刘昌明先生水文科学思想学习的几点认识 被引量:3
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作者 周成虎 刘苏峡 +1 位作者 于静洁 宋献方 《地理学报》 EI CSCD 北大核心 2014年第5期588-594,共7页
刘昌明院士是国际知名的水文水资源学家,长期倡导和力行水循环、水环境、水生态、水资源和水灾害的研究,将水文学的地球物理、工程和地理方向相结合,提出了水文循环研究的微观与宏观系统观点和方法,发展了较为完善的"五水"转... 刘昌明院士是国际知名的水文水资源学家,长期倡导和力行水循环、水环境、水生态、水资源和水灾害的研究,将水文学的地球物理、工程和地理方向相结合,提出了水文循环研究的微观与宏观系统观点和方法,发展了较为完善的"五水"转化的理论模式,构建了全新的分布式水文模型系统,并对华北平原的节水农业发展、"南水北调"工程环境效应、缓解黄河断流的对策等国家重大应用问题,提出了系统性的科学观点和有效的决策咨询意见。本文仅从实验水文学、稀缺资料地区水文预测和水文模型三方面,探讨刘昌明院士跨越50多年的研究工作,从中可以体会出先生研究的系统性思想和不断创新发展的精神。 展开更多
关键词 刘昌明院士 实验水文 稀缺资料地区水文预测 水文系统模拟
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GRACE terrestrial water storage data assimilation based on the ensemble four-dimensional variational method PODEn4DVar:Method and validation 被引量:3
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作者 SUN Qin XIE ZhengHui TIAN XiangJun 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第3期371-384,共14页
Seasonal and interannual changes in the Earth's gravity field are mainly due to mass exchange among the atmosphere,ocean,and continental water sources.The terrestrial water storage changes,detected as gravity chan... Seasonal and interannual changes in the Earth's gravity field are mainly due to mass exchange among the atmosphere,ocean,and continental water sources.The terrestrial water storage changes,detected as gravity changes by the Gravity Recovery and Climate Experiment(GRACE) satellites,are mainly caused by precipitation,evapotranspiration,river transportation and downward infiltration processes.In this study,a land data assimilation system LDAS-G was developed to assimilate the GRACE terrestrial water storage(TWS) data into the Community Land Model(CLM3.5) using the POD-based ensemble four-dimensional variational assimilation method PODEn4 DVar,disaggregating the GRACE large-scale terrestrial water storage changes vertically and in time,and placing constraints on the simulation of vertical hydrological variables to improve land surface hydrological simulations.The ideal experiments conducted at a single point and assimilation experiments carried out over China by the LDAS-G data assimilation system showed that the system developed in this study improved the simulation of land surface hydrological variables,indicating the potential of GRACE data assimilation in large-scale land surface hydrological research and applications. 展开更多
关键词 data assimilation land surface model terrestrial water storage ensemble four-dimensional variational data assimilation method
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