首页> 外文会议>International Conference on Hydroinformatics >THE APPLICATION OF A DYNAMIC OPENMI COUPLING BETWEEN A REGIONAL CLIMATE MODEL AND A DISTRIBUTED SURFACE WATER-GROUNDWATER MODEL
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THE APPLICATION OF A DYNAMIC OPENMI COUPLING BETWEEN A REGIONAL CLIMATE MODEL AND A DISTRIBUTED SURFACE WATER-GROUNDWATER MODEL

机译:区域气候模型与分布式地表水-地下水模型之间动态OPENMI耦合的应用

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To support climate adaptation measures for water resources, we have developed and evaluated a dynamic coupling between a comprehensive distributed hydrological modelling system, MIKE SHE, and a regional climate modelling system, HIRHAM. The coupled model enables two-way interaction between the atmosphere and the groundwater via the soil and land surface and can represent the lateral movement of water in both the surface and subsurface and their interactions as well as human interventions. The coupled model is applied to one-way and two-way coupled simulations for a managed groundwater-dominated catchment, the Skjern River, Denmark. The 2500 km2 catchment model is embedded in a meso-scale (4000 km x 2800 km) climate modelling domain. By using the ERA Interim reanalysis as boundary conditions the coupling performance is evaluated against measurements of both climatic and hydrological variables, including local measurements of energy fluxes. The results presented here suggest that there may be important differences in the simulated water balances for this catchment created by introducing an alternative hydrological model into the RCM.
机译:为了支持水资源的气候适应措施,我们开发并评估了综合的分布式水文模型系统MIKE SHE和区域气候模型系统HIRHAM之间的动态耦合。耦合模型使大气和地下水之间通过土壤和土地表面发生双向交互作用,并且可以表示水在地表和地下的横向运动及其相互作用以及人为干预。耦合模型被用于丹麦Skjern河以受控的地下水为主的集水区的单向和双向耦合模拟。 2500 km2的流域模型被嵌入到中尺度(4000 km x 2800 km)的气候模拟域中。通过使用ERA Interim重新分析作为边界条件,结合气候和水文变量的测量(包括能量通量的局部测量)对耦合性能进行了评估。此处提出的结果表明,通过在RCM中引入替代水文模型而建立的该流域的模拟水平衡可能存在重要差异。

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