虽然近年来卫星反演降雨产品逐渐成熟,但精度仍较差,不能满足现代水文气象业务和科研的需求,因此需要地面观测资料对其进行订正。文中采用的卫星与地面站融合数据是基于中国3万多个自动站降雨观测数据和CMORPH卫星反演降雨资料,采用PDF(...虽然近年来卫星反演降雨产品逐渐成熟,但精度仍较差,不能满足现代水文气象业务和科研的需求,因此需要地面观测资料对其进行订正。文中采用的卫星与地面站融合数据是基于中国3万多个自动站降雨观测数据和CMORPH卫星反演降雨资料,采用PDF(probability density function)和OI(optimal interpolation)两步融合方法生成的中国区域高时空分辨率(0.1°/1h)的降雨量融合产品。通过在汉江丹江口水库以上流域建立分布式水文模型,对2008~2012年的融合降雨数据进行水文模拟适用性分析。结果表明:在日尺度上,CMORPH卫星降雨与地面站点融合数据具有较好的相关性,但存在一定的系统偏差;该降雨产品能较好地捕捉到强度小于25 mm的中小降雨,其模拟的径流与流域下部高峰流量的观测结果有较好的一致性,但总水量比实测值低15.7%,NSE达0.723。研究成果为基于高时空分辨率的卫星雨量计融合降雨产品在分布式水文模型的水文适用性提供了新的见解和经验,并为该数据在流域洪水模拟的水文预报应用提供参考与借鉴。展开更多
[Objective]Under the combined impact of climate change and urbanization,urban rainstorm flood disasters occur frequently,seriously restricting urban safety and sustainable development.Relying on traditional grey infra...[Objective]Under the combined impact of climate change and urbanization,urban rainstorm flood disasters occur frequently,seriously restricting urban safety and sustainable development.Relying on traditional grey infrastructure such as pipe networks for urban stormwater management is not enough to deal with urban rainstorm flood disasters under extreme rainfall events.The integration of green,grey and blue systems(GGB-integrated system)is gradually gaining recognition in the field of global flood prevention.It is necessary to further clarify the connotation,technical and engineering implementation strategies of the GGB-integrated system,to provide support for the resilient city construction.[Methods]Through literature retrieval and analysis,the relevant research and progress related to the layout optimization and joint scheduling optimization of the GGBintegrated system were systematically reviewed.In response to existing limitations and future engineering application requirements,key supporting technologies including the utilization of overground emergency storage spaces,safety protection of underground important infrastructure and multi-departmental collaboration,were proposed.A layout optimization framework and a joint scheduling framework for the GGB-integrated system were also developed.[Results]Current research on layout optimization predominantly focuses on the integration of green system and grey system,with relatively fewer studies incorporating blue system infrastructure into the optimization process.Moreover,these studies tend to be on a smaller scale with simpler scenarios,which do not fully capture the complexity of real-world systems.Additionally,optimization objective tend to prioritize environmental and economic goals,while social and ecological factors are less frequently considered.Current research on joint scheduling optimization is often limited to small-scale plots,with insufficient attention paid to the entire system.There is a deficiency in method for real-time,automated determination of optimal control strategies for combinations of multiple system facilities based on actual rainfall-runoff processes.Additionally,the application of emergency facilities during extreme conditions is not sufficiently addressed.Furthermore,both layout optimization and joint scheduling optimization lack consideration of the mute feed effect of flood and waterlogging in urban,watershed and regional scales.[Conclusion]Future research needs to improve the theoretical framework for layout optimization and joint scheduling optimization of GGB-integrated system.Through the comprehensive application of the Internet of things,artificial intelligence,coupling model development,multi-scale analysis,multi-scenario simulation,and the establishment of multi-departmental collaboration mechanisms,it can enhance the flood resilience of urban areas in response to rainfall events of varying intensities,particularly extreme rainfall events.展开更多
文摘虽然近年来卫星反演降雨产品逐渐成熟,但精度仍较差,不能满足现代水文气象业务和科研的需求,因此需要地面观测资料对其进行订正。文中采用的卫星与地面站融合数据是基于中国3万多个自动站降雨观测数据和CMORPH卫星反演降雨资料,采用PDF(probability density function)和OI(optimal interpolation)两步融合方法生成的中国区域高时空分辨率(0.1°/1h)的降雨量融合产品。通过在汉江丹江口水库以上流域建立分布式水文模型,对2008~2012年的融合降雨数据进行水文模拟适用性分析。结果表明:在日尺度上,CMORPH卫星降雨与地面站点融合数据具有较好的相关性,但存在一定的系统偏差;该降雨产品能较好地捕捉到强度小于25 mm的中小降雨,其模拟的径流与流域下部高峰流量的观测结果有较好的一致性,但总水量比实测值低15.7%,NSE达0.723。研究成果为基于高时空分辨率的卫星雨量计融合降雨产品在分布式水文模型的水文适用性提供了新的见解和经验,并为该数据在流域洪水模拟的水文预报应用提供参考与借鉴。
文摘[Objective]Under the combined impact of climate change and urbanization,urban rainstorm flood disasters occur frequently,seriously restricting urban safety and sustainable development.Relying on traditional grey infrastructure such as pipe networks for urban stormwater management is not enough to deal with urban rainstorm flood disasters under extreme rainfall events.The integration of green,grey and blue systems(GGB-integrated system)is gradually gaining recognition in the field of global flood prevention.It is necessary to further clarify the connotation,technical and engineering implementation strategies of the GGB-integrated system,to provide support for the resilient city construction.[Methods]Through literature retrieval and analysis,the relevant research and progress related to the layout optimization and joint scheduling optimization of the GGBintegrated system were systematically reviewed.In response to existing limitations and future engineering application requirements,key supporting technologies including the utilization of overground emergency storage spaces,safety protection of underground important infrastructure and multi-departmental collaboration,were proposed.A layout optimization framework and a joint scheduling framework for the GGB-integrated system were also developed.[Results]Current research on layout optimization predominantly focuses on the integration of green system and grey system,with relatively fewer studies incorporating blue system infrastructure into the optimization process.Moreover,these studies tend to be on a smaller scale with simpler scenarios,which do not fully capture the complexity of real-world systems.Additionally,optimization objective tend to prioritize environmental and economic goals,while social and ecological factors are less frequently considered.Current research on joint scheduling optimization is often limited to small-scale plots,with insufficient attention paid to the entire system.There is a deficiency in method for real-time,automated determination of optimal control strategies for combinations of multiple system facilities based on actual rainfall-runoff processes.Additionally,the application of emergency facilities during extreme conditions is not sufficiently addressed.Furthermore,both layout optimization and joint scheduling optimization lack consideration of the mute feed effect of flood and waterlogging in urban,watershed and regional scales.[Conclusion]Future research needs to improve the theoretical framework for layout optimization and joint scheduling optimization of GGB-integrated system.Through the comprehensive application of the Internet of things,artificial intelligence,coupling model development,multi-scale analysis,multi-scenario simulation,and the establishment of multi-departmental collaboration mechanisms,it can enhance the flood resilience of urban areas in response to rainfall events of varying intensities,particularly extreme rainfall events.