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Real-time updating of HEC-RAS model for streamflow forecasting using an optimization algorithm

机译:利用优化算法实时更新HEC-RAS模型

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摘要

ABSTRACT Real-time updating of channel flow routing models is essential for error reduction in hydrological forecasting. Recent updating techniques found in scientific literature, although very promising, are complex and often applied in models that demand much time and expert knowledge for their development, posing challenges for using in an operational context. Since powerful and well-known computational tools are currently available, which provide easy-to-use and less time-consuming platforms for preparation of hydrodynamic models, it becomes interesting to develop updating techniques adaptable to such tools, taking full advantage of previously calibrated models as well as the experience of the users. In this work, we present a real-time updating procedure for streamflow forecasting in HEC-RAS model, using the Shuffled Complex Evolution - University of Arizona (SCE-UA) optimization algorithm. The procedure consists in a simultaneous correction of boundary conditions and model parameters through: (i) generation of a lateral inflow, based on Soil Conservation Service (SCS) dimensionless unit hydrograph and; (ii) estimation of Manning roughness in the river channel. The algorithm works in an optimization window in order to minimize an objective function, given by the weighted sum of squared errors between simulated and observed flows where differences in later intervals (start of forecast) are more penalized. As a case study, the procedure was applied in a river reach between Salto Caxias dam and Hotel Cataratas stream gauge, located in the Lower Iguazu Basin. Results showed that, with a small population of candidate solutions in the optimization algorithm, it is possible to efficiently improve the model performance for streamflow forecasting and reduce negative effects caused by lag errors in simulation. An advantage of the developed procedure is the reduction of both excessive handling of external files and manual adjustments of HEC-RAS model, which is important when operational decisions must be taken in relatively short times.
机译:通道摘要实时更新流路由模式是在水文预报误差减小是必不可少的。最近更新技术在科学文献中发现,虽然非常有前途的,是复杂的,在那些需要大量的时间和专业知识,为他们的发展模式经常被应用,冒充挑战使用的操作环境。由于强大的和众所周知的计算工具,目前已经上市,它提供易于使用,并准备水动力模型耗时少平台,就变得有意思了开发更新的技术适应这样的工具,以先前校准模型的充分利用以及用户的体验。在这项工作中,我们提出了一个实时更新过程在HEC-RAS模型径流预测,使用抛去复演化 - 亚利桑那大学(SCE-UA),优化算法。该过程包括在通过边界条件和模型参数同时校正:(ⅰ)产生的横向流入,基于水土保持服务(SCS)无量纲单位线和的; (ⅱ)估计曼宁的粗糙度在河道。该算法在优化窗口以便最小化的目标函数,通过模拟和观察到的流之间的误差平方,其中在稍后的时间间隔(开始预测的)差异更惩罚的加权和给出。作为一个案例研究,该过程在Salto大坝南卡希亚斯和酒店卡塔拉塔斯流计之间的河段,位于下伊瓜苏盆地应用。结果表明,在优化算法候选解决方案的一小口,就可以有效地提高径流预报模型的性能,并降低由模拟滞后误差的负面影响。的发达过程的一个优点是的外部文件和HEC-RAS模式,这是重要的,当操作决定必须在相对短的时间采取的手动调整两者过度处理的减少。

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