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多源观测在水文数据同化中的应用 被引量:1
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作者 杨楚慧 林琳 +1 位作者 张秋汝 史良胜 《中国农村水利水电》 北大核心 2017年第9期52-56,共5页
为理解观测信息对水文数据同化性能的作用,建立了基于分布式水文模型SWAT的集合卡尔曼滤波(EnKF)算法,通过虚拟实验讨论径流、土壤水、地下水位等观测的影响。研究结果表明:当以流域出口点的径流为唯一观测时,可以较为准确地估计径流和... 为理解观测信息对水文数据同化性能的作用,建立了基于分布式水文模型SWAT的集合卡尔曼滤波(EnKF)算法,通过虚拟实验讨论径流、土壤水、地下水位等观测的影响。研究结果表明:当以流域出口点的径流为唯一观测时,可以较为准确地估计径流和参数CN_2,但对深层土壤水估计效果有限;浅层含水量观测可以用于估计暴雨径流,但模拟垂向水分运动时会产生偏差,不能改善整个径流过程估计;由于地下水位的变化可以在一定程度上反映土壤的垂向运动信息,补充地下水位观测可以提高土壤水的估计效果。因此,采用多源观测能更为精确地模拟径流和土壤水分状态,可以考虑使用成本低、易获取的地下水观测来反映深层土壤水的变化情况。 展开更多
关键词 多源观测 水文数据同化 集合卡尔曼滤波 SWAT
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Freshening of the intermediate water of the South China Sea between the 1960s and the 1980s 被引量:4
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作者 刘长建 王东晓 +2 位作者 陈举 杜岩 谢强 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2012年第6期1010-1015,共6页
Variation in intermediate water salinity in the South China Sea (SCS) between the 1960s and 1980s was studied using historical hydrographic data. The results demonstrate that the water was significantly fresher in the... Variation in intermediate water salinity in the South China Sea (SCS) between the 1960s and 1980s was studied using historical hydrographic data. The results demonstrate that the water was significantly fresher in the 1980s than in the 1960s, indicating that vertical mixing at intermediate water depth was reduced in the 1980s. This was partially because of the change of the SCS meridional overturning circulation (MOC) connecting local intermediate water with deep water. Data assimilation showed a 0.5Sv (1 Sv=10 6m 3/s) reduction in the strength of the MOC, which is about one third of the mean SCS MOC. Because the SCS MOC is linked to the Pacific Ocean, such an interdecadal variation in the intermediate water SCS may reflect anthropogenic climate change in the world ocean. 展开更多
关键词 decadal variability intermediate water meridional overturning circulation South China Sea (SCS)
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Assimilation of ASAR Data with a Hydrologic and Semi-empirical Backscattering Coupled Model to Estimate Soil Moisture 被引量:3
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作者 LIU Qian WANG Mingyu ZHAO Yingshi 《Chinese Geographical Science》 SCIE CSCD 2010年第3期218-225,共8页
The most promising approach for studying soil moisture is the assimilation of observation data and computational modeling. However, there is much uncertainty in the assimilation process, which affects the assimilation... The most promising approach for studying soil moisture is the assimilation of observation data and computational modeling. However, there is much uncertainty in the assimilation process, which affects the assimilation results. This research developed a one-dimensional soil moisture assimilation scheme based on the Ensemble Kalman Filter (EnKF) and Genetic Algorithm (GA). A two-dimensional hydrologic model-Distributed Hydrology-Soil-Vegetation Model (DHSVM) was coupled with a semi-empirical backscattering model (Oh). The Advanced Synthetic Aperture Radar (ASAR) data were assimilated with this coupled model and the field observation data were used to validate this scheme in the soil moisture assimilation experiment. In order to improve the assimilation results, a cost function was set up based on the distance between the simulated backscattering coefficient from the coupled model and the observed backscattering coefficient from ASAR. The EnKF and GA were used to re-initialize and re-parameterize the simulation process, respectively. The assimilation results were compared with the free-run simulations from hydrologic model and the field observation data. The results obtained indicate that this assimilation scheme is practical and it can improve the accuracy of soil moisture estimation significantly. 展开更多
关键词 Advanced Synthetic Aperture Radar (ASAR) Distributed Hydrology-Soil-Vegetation Model (DHSVM) Oh Model couple soil moisture data assimilation
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A review on evapotranspiration data assimilation based on hydrological models 被引量:9
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作者 董晴晴 占车生 +2 位作者 王会肖 王飞宇 朱明承 《Journal of Geographical Sciences》 SCIE CSCD 2016年第2期230-242,共13页
Accurate estimation of evapotranspiration(ET),especially at the regional scale,is an extensively investigated topic in the field of water science. The ability to obtain a continuous time series of highly precise ET va... Accurate estimation of evapotranspiration(ET),especially at the regional scale,is an extensively investigated topic in the field of water science. The ability to obtain a continuous time series of highly precise ET values is necessary for improving our knowledge of fundamental hydrological processes and for addressing various problems regarding the use of water. This objective can be achieved by means of ET data assimilation based on hydrological modeling. In this paper,a comprehensive review of ET data assimilation based on hydrological modeling is provided. The difficulties and bottlenecks of using ET,being a non-state variable,to construct data assimilation relationships are elaborated upon,with a discussion and analysis of the feasibility of assimilating ET into various hydrological models. Based on this,a new easy-to-operate ET assimilation scheme that includes a water circulation physical mechanism is proposed. The scheme was developed with an improved data assimilation system that uses a distributed time-variant gain model(DTVGM),and the ET-soil humidity nonlinear time response relationship of this model. Moreover,the ET mechanism in the DTVGM was improved to perfect the ET data assimilation system. The new scheme may provide the best spatial and temporal characteristics for hydrological states,and may be referenced for accurate estimation of regional evapotranspiration. 展开更多
关键词 EVAPOTRANSPIRATION data assimilation hydrological model non-state variable
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