周睿,程永光,吴家阳. 基于浸没边界法的水库变动水面模拟及验证[J]. 水利水运工程学报,2020(1):66-73. doi: 10.12170/20180821001
引用本文: 周睿,程永光,吴家阳. 基于浸没边界法的水库变动水面模拟及验证[J]. 水利水运工程学报,2020(1):66-73. doi: 10.12170/20180821001
(ZHOU Rui, CHENG Yongguang, WU Jiayang. Simulation and verification of reservoir fluctuating water level based on immersed boundary method[J]. Hydro-Science and Engineering, 2020(1): 66-73. (in Chinese)). doi: 10.12170/20180821001
Citation: (ZHOU Rui, CHENG Yongguang, WU Jiayang. Simulation and verification of reservoir fluctuating water level based on immersed boundary method[J]. Hydro-Science and Engineering, 2020(1): 66-73. (in Chinese)). doi: 10.12170/20180821001

基于浸没边界法的水库变动水面模拟及验证

Simulation and verification of reservoir fluctuating water level based on immersed boundary method

  • 摘要: 水库水面波动具有复杂的流动边界。对复杂边界条件的处理,将直接影响水资源的开发利用效果。为模拟真实水库自由液面的大幅变动,利用浸没边界法来处理水库自由液面的变动问题,比较水库水温分布、水库下泄水温和坝前垂向水温分布,并通过简单算例予以验证。结果表明:该方法具有良好的可行性和准确性,改进了水库变动水面预测方法,可用于研究水库水面的时空变化规律。

     

    Abstract: The fluctuation of reservoir water surface has complex flowing boundaries. The ability and effectiveness in processing complex boundary conditions will have a major impact on the sustainable development and utilization of water resources. In order to simulate the large variation of the free surface of the real reservoirs, this research deals with the variation of the free surface of the reservoir by use of the immersed boundary method (IBM), which compares the distribution of the reservoir water temperature, the reservoir drainage temperature and the vertical water temperature distribution in the front of dam, and the results are verified by a simple calculation example. The simulation results show that the method has good feasibility and accuracy, can improve the prediction method for reservoir fluctuating water level, and can be used to study the spatio-temporal variation law of the reservoir water level. And the research results have broad application prospects in dealing with the problems of large variation of the reservoir water surface and can provide a technical support for simulating similar reservoirs in the future.

     

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