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首页> 外文期刊>Hydrological Processes >Improving WRF-Hydro runoff simulations of heavy floods through the sea surface temperature fields with higher spatio-temporal resolution
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Improving WRF-Hydro runoff simulations of heavy floods through the sea surface temperature fields with higher spatio-temporal resolution

机译:通过具有更高的时空分辨率的海面温度田改善WRF-Hydro径流模拟大洪水

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摘要

This study investigates the impact of the spatio-temporal accuracy of four different sea surface temperature (SST) datasets on the accuracy of the Weather Research and Forecasting (WRF)-Hydro system to simulate hydrological response during two catastrophic flood events over the Eastern Black Sea (EBS) and the Mediterranean (MED) regions of Turkey. Three time-variant and high spatial resolution external SST products (GHRSST, Medspiration and NCEP-SST) and one coarse-resolution and time-invariant SST product (ERA5- and GFS-SST for EBS and MED regions, respectively) already embedded in the initial and the boundary conditions datasets of WRF model are used in deriving near-surface atmospheric variables through WRF. After the proper event-based calibration is performed to the WRF-Hydro system using hourly and daily streamflow data in both regions, uncoupled model simulations for independent SST events are conducted to assess the impact of SST-triggered precipitation on simulated extreme runoff. Some localized and temporal differences in the occurrence of the flood events with respect to observations depending on the SST representation are noticeable. SST products represented with higher cross-correlations (GHRSST and Medspiration) revealed significant improvement in flood hydrographs for both regions. The GHRSST dataset shows a substantial improvement in NSE (similar to 70%), RMSE reduction up to 20%, and an increase in correlation from 0.3 to 0.8 with respect to the invariable SST (ERA5) in simulated runoffs over the EBS region. The use of both GHRSST and Medspiration SST data characterized with high spatiotemporal correlation resulted in runoff simulations exactly matching the observed runoff peak of 300 m(3)/s by reducing the overestimation seen in invariable SST (GFS) in the MED region. Improved precipitation simulation skills of the WRF model with the detailed SST representation show that the hydrographs of GHRSST and Medspiration simulations show better performance compared to the simulated hydrographs by observed precipitation.
机译:本研究调查了四种不同海表面温度(SST)数据集的时空精度对天气研究和预测(WRF)-HYDRO系统的准确性来模拟东部黑海两次灾难性洪水事件中的水文反应的准确性(EBS)和土耳其地中海(Med)地区。三个时间变体和高空间分辨率外部SST产品(GHRSST,MEDSPIRITY和NCEP-SST)和一个粗辨率和时间不变的SST产品(分别已经嵌入的EBS和MB和MBS和MED地区的ERA5和GFS-SST) WRF模型的初始和边界条件数据集用于通过WRF导出近表面大气变量。在两个区域中使用每小时和日常流式流数据对WRF-Hydro系统执行基于事件的校准之后,进行独立SST事件的未耦合模拟,以评估SST触发降水对模拟极端径流的影响。关于根据SST表示的观察发生洪水事件发生的一些局部和时间差异是显着的。具有较高互相关(GHRST和MEDSPIRS)表示的SST产品揭示了这两个地区的洪水文化照片的显着改善。 GhRSST数据集显示了NSE(类似于70%)的大量改进,RMSE降低高达20%,并且在EBS区域上的模拟径流中的不变SST(ERA5)增加0.3至0.8的相关性。使用具有高时空相关性的GhRSST和Medspiration SST数据导致径流模拟,通过降低MED区域中的不变SST(GFS)中看到的高估估计,与观察到的径流峰值完全匹配。利用详细的SST表示,改善了WRF模型的降水模拟技巧,表明GhRSST和枸杞模拟的水文显示出更好的性能,与观察到的沉淀相比模拟的水文。

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