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Influence of aeration and initial water thickness on axial velocity attenuation of jet flows

机译:曝气和初始水厚对射流轴向速度衰减的影响

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摘要

With the development of ski-jump energy dissipation for high and large discharge among the hydraulic projects, the effects of characteristics of water flow on energy dissipation are increasingly important. In the present study, the effects of aeration and the initial water thickness on axial velocity attenuation of jet flow were analyzed, using variance analysis and numerical calculated methods. From the analysis of test data, both of the air concentration and initial water thickness are sensitive factors for the axial velocity attenuation of jet flow along the axial way, and there is no significant interaction effect between the aeration and initial water thickness. Aeration has a more significant effect on the axial velocity attenuation of jet flow. Decreasing the initial water thickness of jet flow can reduce the length of jet core, and make the initial position of axial velocity attenuation closer to the nozzle exit. The numerical calculation results show that aeration can contribute to the enhancement of entrainment ability of jet flow, which may improve the interaction between jet flow and surroundings. For ski-jump energy dissipation among the hydraulic projects, combining aeration with decreasing initial water thickness of jet flow is an effective way to enhance the rate of axial velocity attenuation.
机译:随着水利工程中大,大流量跳台滑雪消能的发展,水流特性对消能的影响越来越重要。在本研究中,使用方差分析和数值计算方法分析了曝气和初始水厚对射流轴向速度衰减的影响。从试验数据的分析来看,空气浓度和初始水厚度都是沿轴向喷射流轴向速度衰减的敏感因素,通气和初始水厚度之间没有显着的相互作用。曝气对射流轴向速度衰减的影响更大。减小射流的初始水厚度可以减小射流芯的长度,并使轴向速度衰减的初始位置更靠近喷嘴出口。数值计算结果表明,曝气有助于提高射流的夹带能力,从而改善射流与周围环境的相互作用。对于水力工程中的跳跳能量消散,将曝气与降低射流的初始水厚度相结合是提高轴向速度衰减率的有效方法。

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  • 来源
    《Journal of Zhejiang University SCIENCE A》 |2013年第5期|362-370|共9页
  • 作者

    Wang-ru Wei; Jun Deng; Bin Liu;

  • 作者单位

    State Key Laboratory of Hydraulics and Mountain River Engineering Sichuan University">(1);

    State Key Laboratory of Hydraulics and Mountain River Engineering Sichuan University">(1);

    Hydro-China Kunming Engineering Corporation">(2);

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