从超临界状态到亚临界状态的非静水过渡明渠流

IF 0.6 Q4 ENGINEERING, CIVIL Slovak Journal of Civil Engineering Pub Date : 2021-06-01 DOI:10.2478/sjce-2021-0012
Y. Zerihun
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引用次数: 1

摘要

摘要在本研究中,采用深度平均数值模型研究了明渠从超临界状态过渡到亚临界状态的二维流动特征。与浅水模型相比,所提出的模型包含了补充项,以考虑非均匀速度和非静水压力分布的影响。采用Adams–Bashforth–Moulton格式对模型方程进行了数值求解。为了评估数值模型的适用性,考虑了各种各样的过渡明渠流动问题,如水跃。将该模型的自由表面轮廓、压力分布和第一波波动特性的结果与实验数据进行了比较,结果令人满意。尽管存在流动的三维特性和空气夹带引起的流动膨胀的影响,但该模型在模拟曲线湍流问题的平均流动特性方面表现相当好。此外,研究结果证实,该模型更适合于分析没有跨通道冲击波的近临界湍流问题。
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Non-Hydrostatic Transitional Open-Channel Flows from a Supercritical to a Subcritical State
Abstract In this study, a depth-averaged numerical model was employed to investigate the two-dimensional flow features of transitional open-channel flows from a supercritical to a subcritical state. Compared to a shallow-water model, the proposed model incorporates supplementary terms to account for the effects of non-uniform velocity and non-hydrostatic pressure distributions. The model equation was solved numerically by means of the Adams–Bashforth–Moulton scheme. A wide variety of transitional open-channel flow problems such as hydraulic jumps was considered for assessing the suitability of the numerical model. The results of the model for the free-surface profile, pressure distribution, and characteristics of the first wave of an undular jump were compared with the experimental data, and the agreement was found to be satisfactory. Despite the effects of the three-dimensional characteristics of the flow and the bulking of the flow caused by air entrainment, the model performed reasonably well with respect to the simulations of the mean flow characteristics of the curvilinear turbulent flow problems. Furthermore, the results of this investigation confirmed that the model is more suitable for analyzing near-critical turbulent flow problems without cross-channel shock waves.
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来源期刊
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0.00%
发文量
21
审稿时长
29 weeks
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