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Development of Geomorphology Based Regional Nash Model for Data Scares Central India Region

机译:基于地貌的区域纳什模型对印度中部地区数据的恐慌

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The development of rainfall runoff relationship for ungauged watersheds using topography, geomorphology and other regional information remains the most active area of research in the field of hydrology. In the developing countries, some thumb rules and very old equations are in practice for designing water resources structures which sometimes provide erroneous results. In the proposed study, regional relationships have been developed for computation of peak velocity and scale parameters of Nash model using geomorphological and fluvial characteristics of 41 watersheds of varying characteristics in Central India region. The regional relationships developed to determine scale parameter ((k)) of Nash model from a morpho-fluvial factor, has facilitated derivation of at-site regional and regional only instantaneous unit hydrograph (IUH), unit hydrograph (UH) and direct surface runoff (DSRO). The performance of proposed regional model has been evaluated using spatial correlation coefficient, integral square error, relative mean absolute error, root mean square error, relative error in peak, coefficient of residual mass and model efficiency. The response of proposed regional model have been found comparable with the observed values as the Nash-Sutcliffe efficiency of proposed model during calibration varies from 69.7 % to 95.2 % for site specific approach, 60.6 % to 97.7 % for at-site regional and 67.1 % to 98.7 % for regional only approach. Similarly, the performance of proposed model have been found satisfactorily during validation as the efficiency varies from 81.3 % to 99.9 % for site specific approach, 83.5 % to 99.9 % for at-site regional and 82.7 % to 99.9 % for regional only approach. The simple regional relationships developed in the study can be used for event based rainfall-runoff modeling and estimation of design flood in ungauged catchments of central Indian region.
机译:利用地形学,地貌学和其他区域信息来发展非流域的降雨径流关系仍然是水文学领域最活跃的研究领域。在发展中国家,实践中使用一些经验法则和非常古老的公式来设计水资源结构,有时会产生错误的结果。在拟议的研究中,利用印度中部地区41个具有不同特征的流域的地貌和河流特征,开发了用于计算Nash模型的峰值速度和尺度参数的区域关系。发展起来的区域关系可以根据形态河流因子确定Nash模型的比例参数((k)),这有助于推导现场区域和仅区域瞬时单位水位线(IUH),单位水位线(UH)和直接地表径流(DSRO)。使用空间相关系数,积分平方误差,相对平均绝对误差,均方根误差,峰值相对误差,残留质量系数和模型效率对所提出的区域模型的性能进行了评估。已发现拟议区域模型的响应与观测值相当,因为在定标过程中拟议模型的纳什-萨特克利夫效率在特定地点的方法为69.7%至95.2%,在现场区域为60.6%至97.7%,而67.1%仅限区域性方法达到98.7%。同样,在验证过程中令人满意地发现了所提出模型的性能,因为针对特定地点的方法的效率从81.3%到99.9%,对于现场区域方法的效率从83.5%到99.9%,对于仅区域方法的效率从82.7%到99.9%。研究中建立的简单区域关系可用于基于事件的降雨径流建模和印度中部地区未开垦集水区设计洪水的估算。

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