吴家阳, 李安强, 程永光. 一维-三维耦合的明渠瞬变流模拟方法与应用[J]. 水科学进展, 2022, 33(6): 989-999. DOI: 10.14042/j.cnki.32.1309.2022.06.013
引用本文: 吴家阳, 李安强, 程永光. 一维-三维耦合的明渠瞬变流模拟方法与应用[J]. 水科学进展, 2022, 33(6): 989-999. DOI: 10.14042/j.cnki.32.1309.2022.06.013
WU Jiayang, LI Anqiang, CHENG Yongguang. 1D-3D coupling method for transient flow simulations in open channel and its applications[J]. Advances in Water Science, 2022, 33(6): 989-999. DOI: 10.14042/j.cnki.32.1309.2022.06.013
Citation: WU Jiayang, LI Anqiang, CHENG Yongguang. 1D-3D coupling method for transient flow simulations in open channel and its applications[J]. Advances in Water Science, 2022, 33(6): 989-999. DOI: 10.14042/j.cnki.32.1309.2022.06.013

一维-三维耦合的明渠瞬变流模拟方法与应用

1D-3D coupling method for transient flow simulations in open channel and its applications

  • 摘要: 为精细化模拟明渠中水电站瞬变过程引发的涌浪, 克服以往低维模型无法细致刻画涌浪的横向和垂向运动、以及高维模型计算效率偏低等问题, 基于水位预测矫正法, 提出了一维-三维耦合的明渠瞬变流模拟方法。通过潮汐波浪运动、局部溃坝波和顺直明渠瞬变流算例验证了方法的有效性和准确性, 模拟结果与渐进理论解、商用软件模拟结果等吻合较好。将该方法应用在实际工程中, 计算了葛洲坝水利枢纽瞬变过程中库区的涌浪过程, 分析了瞬变过程的最大、最小涌浪波高和涌浪的衰减规律, 结果与频谱分析结果吻合较好, 说明了本方法能准确模拟实际的明渠瞬变流过程。

     

    Abstract: Based on water stage prediction-correction method, an 1D-3D coupled method is proposed to accurately simulate the surge wave caused by the transient process of hydropower stations in open channel, overcoming the inability of low-dimensional models to fully resolve the horizontal and vertical fluctuation of the surge wave, and low computational efficiency of high-dimensional models. Typical verification cases, including the tidal wave motion, the partial dam break flow and the open channel transient flow are simulated to analyze the accuracy of the proposed method. The simulated results are in good agreement with asymptotic theoretical solution and those yielded by commercial software. To futher demonstrate its capability in practical cases, the surge wave triggered by the transient process of the Gezhouba hydropower station is simulated. The maximum and minimum surge wave heights including its attenuation characteristics are analyzed. The results are in good agreement with those yielded by spectrum analysis, showing that the proposed method is capable of simulating practical transient flows in open channel.

     

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