{"title":"基于径流曲线数的降雨径流模型参数重计算","authors":"Tomáš Řehánek, M. Podhorányi, J. Krenek","doi":"10.2478/geosc-2019-0013","DOIUrl":null,"url":null,"abstract":"Abstract One of the fundamental issues of hydrology is determination of total runoff volume from rainfall. The mutual relationship of these quantities can be experimentally determined by measuring rainfall and runoff. Rainfall-runoff models describe natural relations on the basis of variables determining physio-geographical conditions of a territorial unit as well as hydraulic properties of the respective river network. In the proposed paper, we focused on parameter recalculation of a rainfall-runoff model with focusing on runoff curve numbers (CN). The objective of this study was to update the data (CN) in the old modelling structures within the FLOREON+ (FLOods REcognition on the Net – Study Area) system and replace them with the new ones. The parameters of runoff CN were estimated according to available GIS layers primarily related to the existing soil conditions and land use. In the first phase, the calculation procedure was prepared for the smaller Porubka and Lubina basins, and then it was applied to the whole basin area. The results showed that the new runoff CN recalculation procedure resulted in reduction of the simulated runoff (peak discharge, volume) in the Odra River sub-basins, which also led to approximation to the real measured runoff in the Ostrava-Svinov profile. The derived method is applicable to other basins as well. Highlights for public administration, management and planning: • Runoff volumes resulting from rainfall significantly contribute to risk processes, such as soil erosion and floods. • The partially automated procedure for rainfall-runoff estimation is preseted, based on data for soil conditions and land cover. • Derivation is based on the original principles determined by the US Soil Conservation Service and can be applied to any river basin in the area of the Czech Republic. • In the future, the proposed methodology will be adapted to run within the ArcMap application.","PeriodicalId":42291,"journal":{"name":"GeoScape","volume":null,"pages":null},"PeriodicalIF":0.7000,"publicationDate":"2019-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":"{\"title\":\"Parameter recalculation for a rainfall-runoff model with a focus on runoff curve numbers\",\"authors\":\"Tomáš Řehánek, M. Podhorányi, J. 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In the first phase, the calculation procedure was prepared for the smaller Porubka and Lubina basins, and then it was applied to the whole basin area. The results showed that the new runoff CN recalculation procedure resulted in reduction of the simulated runoff (peak discharge, volume) in the Odra River sub-basins, which also led to approximation to the real measured runoff in the Ostrava-Svinov profile. The derived method is applicable to other basins as well. 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引用次数: 2
摘要
摘要水文的基本问题之一是确定降雨的总径流量。这些数量之间的相互关系可以通过测量降雨量和径流来实验确定。降雨-径流模型描述了基于变量的自然关系,这些变量决定了领土单元的物理地理条件以及各自河网的水力特性。在本文中,我们专注于降雨-径流模型的参数重新计算,重点是径流曲线数(CN)。本研究的目的是更新FLOREON+(FLOods REcognition on The Net–study Area)系统中旧建模结构中的数据(CN),并用新的数据替换它们。径流CN的参数是根据主要与现有土壤条件和土地利用有关的可用GIS层估计的。在第一阶段,为较小的Porubka和Lubina盆地编制了计算程序,然后将其应用于整个盆地区域。结果表明,新的径流CN重新计算程序导致奥德拉河子流域的模拟径流(峰值流量、流量)减少,这也导致Ostrava Svinov剖面中的实际测量径流接近。导出的方法也适用于其他盆地。公共行政、管理和规划的要点:•降雨产生的径流量对土壤侵蚀和洪水等风险过程有很大影响。•降雨径流估算的部分自动化程序是根据土壤条件和土地覆盖数据预先设定的。•推导基于美国土壤保护局确定的原始原则,可应用于捷克共和国地区的任何河流流域。•未来,拟议的方法将进行调整,以便在ArcMap应用程序中运行。
Parameter recalculation for a rainfall-runoff model with a focus on runoff curve numbers
Abstract One of the fundamental issues of hydrology is determination of total runoff volume from rainfall. The mutual relationship of these quantities can be experimentally determined by measuring rainfall and runoff. Rainfall-runoff models describe natural relations on the basis of variables determining physio-geographical conditions of a territorial unit as well as hydraulic properties of the respective river network. In the proposed paper, we focused on parameter recalculation of a rainfall-runoff model with focusing on runoff curve numbers (CN). The objective of this study was to update the data (CN) in the old modelling structures within the FLOREON+ (FLOods REcognition on the Net – Study Area) system and replace them with the new ones. The parameters of runoff CN were estimated according to available GIS layers primarily related to the existing soil conditions and land use. In the first phase, the calculation procedure was prepared for the smaller Porubka and Lubina basins, and then it was applied to the whole basin area. The results showed that the new runoff CN recalculation procedure resulted in reduction of the simulated runoff (peak discharge, volume) in the Odra River sub-basins, which also led to approximation to the real measured runoff in the Ostrava-Svinov profile. The derived method is applicable to other basins as well. Highlights for public administration, management and planning: • Runoff volumes resulting from rainfall significantly contribute to risk processes, such as soil erosion and floods. • The partially automated procedure for rainfall-runoff estimation is preseted, based on data for soil conditions and land cover. • Derivation is based on the original principles determined by the US Soil Conservation Service and can be applied to any river basin in the area of the Czech Republic. • In the future, the proposed methodology will be adapted to run within the ArcMap application.