提高印度比马河上游流域多模式中短期降水和流量预测的准确性

IF 2.8 3区 环境科学与生态学 Q2 WATER RESOURCES Hydrological Sciences Journal-Journal Des Sciences Hydrologiques Pub Date : 2023-08-01 DOI:10.1080/02626667.2023.2243257
S. Nandi, M. Janga Reddy
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引用次数: 1

摘要

准确的降水预报和充足的预警时间是建立强大的洪水预警系统的先决条件,这是非常具有挑战性的,特别是在像印度这样的发展中国家。本研究评估了TIGGE多模式综合气象预报在北马河上游流域的效用,并通过校正水文(VIC-RAPID)模型和贝叶斯模型平均(BMA)方法对径流进行后处理,研究了TIGGE预报的水文效用。结果表明,降水和模拟流量的气象预报质量随提前时间的增加而恶化,可通过适当的偏差校正技术加以改善。基于bma的后处理进一步改善了径流模拟,特别是在极端事件的情况下,突出了其在洪水预报中的有效性。根据研究结果,建议采用一套由改进的降水预测、校正后的VIC-RAPID模式和综合的水流后处理组成的复合系统,以促进可靠的水预报系统的运作。
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Improving the accuracy of multimodel short-to-medium-range precipitation and streamflow forecasts over the Upper Bhima river basin, India
ABSTRACT Accurate precipitation forecasting with sufficient lead time is a prerequisite for developing a robust flood warning system (FWS), which is very challenging, particularly in developing countries like India. This study evaluates the utility of the TIGGE multimodel ensemble meteorological forecasts over the Upper Bhima River basin and investigated the hydrological utility of the TIGGE forecasts through a calibrated hydrological (VIC-RAPID) model followed by the post-processing of streamflow through Bayesian model average (BMA) approach. Results show that the quality of the meteorological forecasts of precipitation, and of the simulated streamflow, deteriorated with increasing lead time, which can be ameliorated with a suitable bias-correction technique. The BMA-based post-processing further improved the streamflow simulations, especially in case of extreme events, which highlighted its efficacy in flood forecasting. From the results of the study, it is recommended that a compound system of improved precipitation prediction, calibrated VIC-RAPID model and post-processing of streamflows in an integrated manner would facilitate a reliable FWS for operational purposes.
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来源期刊
CiteScore
6.60
自引率
11.40%
发文量
144
审稿时长
9.8 months
期刊介绍: Hydrological Sciences Journal is an international journal focused on hydrology and the relationship of water to atmospheric processes and climate. Hydrological Sciences Journal is the official journal of the International Association of Hydrological Sciences (IAHS). Hydrological Sciences Journal aims to provide a forum for original papers and for the exchange of information and views on significant developments in hydrology worldwide on subjects including: Hydrological cycle and processes Surface water Groundwater Water resource systems and management Geographical factors Earth and atmospheric processes Hydrological extremes and their impact Hydrological Sciences Journal offers a variety of formats for paper submission, including original articles, scientific notes, discussions, and rapid communications.
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