使用HEC-HMS对Bhagirathi河流域进行水文建模

Tripti Dimri, Shamshad Ahmad, M. Sharif
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引用次数: 2

摘要

通过水文模型可以更好地了解世界各地的河流流域。然而,水文模型的开发和应用,特别是在气候变化的影响下,是一项艰巨的任务。本研究描述了使用HEC-HMS水文模型模拟Bhagirathi河流域的流量。该次盆地是恒河盆地的一部分,位于印度北阿坎德邦喜马拉雅山脉。Tehri大坝水库是一个季节性调节水库,流域水文状况的变化需要改变其运营策略。HEC-HMS模型模拟了2010年至2015年的单年和三年时间窗口,包括模型的校准和验证。模拟结果表明,观测数据与模拟数据非常吻合。HEC-HMS模型在模拟Tehri出口流量方面的效率已在本研究中得到明确证明。
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Hydrological modelling of Bhagirathi River basin using HEC-HMS
River basins around the world are better understood through hydrological models. However, the development and application of hydrological models, particularly under the influence of climate change, is a daunting task. The present research describes the simulation of streamflows in the Bhagirathi River basin using HEC-HMS hydrological model. This subbasin is a part of the Ganga basin and is situated in the Himalayan state of Uttarakhand, India. The Tehri dam reservoir is a seasonally regulated reservoir, and changes in the hydrological regime of the river basin would necessitate changes in its operational strategies. The HEC-HMS model is simulated for single and three-year time windows from 2010 to 2015, including calibration and validation of the model. Results of the simulation indicated a close agreement between the observed and simulated data. The efficiency of the HEC-HMS model in simulating the streamflows at the outlet of Tehri has clearly been demonstrated in this research.
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来源期刊
CiteScore
2.90
自引率
16.70%
发文量
31
期刊介绍: JAWER’s paradigm-changing (online only) articles provide directly applicable solutions to water engineering problems within the whole hydrosphere (rivers, lakes groundwater, estuaries, coastal and marine waters) covering areas such as: integrated water resources management and catchment hydraulics hydraulic machinery and structures hydraulics applied to water supply, treatment and drainage systems (including outfalls) water quality, security and governance in an engineering context environmental monitoring maritime hydraulics ecohydraulics flood risk modelling and management water related hazards desalination and re-use.
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