Enhancing Urban Flood Forecasting: Integrating Weather Forecasts and Hydrological Models

Water Pub Date : 2024-07-15 DOI:10.3390/w16142004
Yebing Liu, Luoyang Wang, Yihan Lou, Tangao Hu, Jiaxi Wu, Huiyan Xu
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Abstract

Precipitation data in urban hydrological models are derived from an ideal stormwater model, which has some uncertainties and limited prediction times. Therefore, to reliably forecast urban flooding, prolong prediction time periods, and better support associated research in urban flood forecasting, a combination of weather forecasts and urban hydrology is necessary. By applying comprehensive cloud microphysical schemes in the Weather Research and Forecasting (WRF) model to the predecessor torrential rainfall associated with Typhoon Khanun (2017), this study evaluated different configurations of atmospheric-hydrological simulations based on the WRF model and InfoWorks ICM. Results showed that the microphysics scheme could significantly affect spatial and temporal distributions of the simulated torrential rainfall. Generally, the combination of WRF and NSSL schemes produced better performance. Applying the NSSL scheme to the WRF model and combining it with the InfoWorks ICM system can reproduce torrential rainfall and urban flood formations.
加强城市洪水预报:整合天气预报和水文模型
城市水文模型中的降水数据来自理想的暴雨模型,该模型具有一定的不确定性和有限的预测时间。因此,为了可靠地预报城市内涝,延长预报时间,更好地支持城市内涝预报的相关研究,有必要将天气预报和城市水文结合起来。通过将天气研究和预报(WRF)模式中的综合云微物理方案应用于台风 "卡农"(2017 年)的前兆暴雨,本研究评估了基于 WRF 模式和 InfoWorks ICM 的大气-水文模拟的不同配置。结果表明,微物理方案会显著影响模拟暴雨的时空分布。一般来说,WRF 和 NSSL 方案的组合具有更好的性能。将 NSSL 方案应用于 WRF 模型并与 InfoWorks ICM 系统相结合,可以再现暴雨和城市洪水的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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