Development of channel transmission loss function for WRF_HYDRO modeling of semi-arid regions: The case of wadi Faria, Palestine

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Abstract

In arid and semi-arid regions, the quantitative understanding of the processes of runoff generation and prediction of the streamflow hydrographs and their transmission to the catchment outlet are among the most basic challenges of hydrology. To address these challenges, hydrological modeling has been used to gain understanding of the hydro-logical systems and to provide the required inputs needed for sustainable water resources management. Further-more, coupling hydrological models with climatic models provides even more understanding of the influence of the climatic parameters on hydrological processes and systems, and hence on runoff generation mechanism. In this research, WRF-Hydro (the Weather Research Forecasting model coupled with the Distributed Hydrologic Modeling System) was used for streamflow forecasting in the Faria catchment. Faria (320 km2), located in the northeastern part of the West Bank, Palestine, is a gauged catchment where rainfall and streamflow data are available for more than ten years. This study aims to assess the functionality of the WRF-Hydro to predict reliable streamflow hydro-graphs at the upper part of the catchment. Additionally, a new channel loss function was incorporated into WRF-Hydro to model the amount of water lost in the ephemeral (loosing) streams of the catchment. Hence, the rainfall and streamflow data for the rainy season; 2017-2018.were utilized. Results indicate that WRF-Hydo model is well functioning, but model calibration and validation is still required to further improve the model performance.
半干旱区WRF_HYDRO模型中通道传输损失函数的发展:以巴勒斯坦瓦迪法里亚为例
在干旱和半干旱地区,对径流生成过程的定量理解和对河流水文曲线的预测及其向集水口的传输是水文学最基本的挑战之一。为了应对这些挑战,水文建模已被用于了解水文系统,并为可持续水资源管理提供所需的投入。此外,水文模型与气候模型的耦合可以更好地了解气候参数对水文过程和系统的影响,从而了解径流生成机制。本研究采用WRF-Hydro(天气研究预报模型与分布式水文模拟系统相结合)对法利亚流域进行了流量预报。法利亚(320平方公里)位于巴勒斯坦西岸东北部,是一个经过测量的集水区,那里的降雨和流量数据可获得十多年。本研究旨在评估WRF-Hydro的功能,以预测集水区上部可靠的水流曲线。此外,WRF-Hydro还加入了一个新的渠道损失函数,以模拟集水区短暂(失去的)溪流中损失的水量。因此,雨季的降雨量和流量数据;2017 - 2018。被利用。结果表明,WRF-Hydo模型运行良好,但仍需进行模型标定和验证,以进一步提高模型性能。
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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