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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Large-Eddy Simulation of Buoyancy-Induced Flow in a Sealed Rotating Cavity
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Large-Eddy Simulation of Buoyancy-Induced Flow in a Sealed Rotating Cavity

机译:密封旋转腔中浮力诱导流动的大涡模拟

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Buoyancy-induced flows occur in the rotating cavities of gas turbine internal air systems, and are particularly challenging to model due to their inherent unsteadiness. While the global features of such flows are well documented, detailed analyses of the unsteady structure and turbulent quantities have not been reported. In this work, we use a high-order numerical method to perform large-Eddy simulation of buoyancy-induced flow in a sealed rotating cavity with either adiabatic or heated disks. New insight is given into long-standing questions regarding the flow characteristics and nature of the boundary layers. The analyses focus on showing time-averaged quantities, including temperature and velocity fluctuations, as well as on the effect of the centrifugal Rayleigh number on the flow structure. Using velocity and temperature data collected over several revolutions of the system, the shroud and disk boundary layers are analyzed in detail. The instantaneous flow structure contains pairs of large, counter-rotating convection rolls, and it is shown that unsteady laminar Ekman boundary layers near the disks are driven by the interior flow structure. The shroud thermal boundary layer scales as approximately Ra-1/3, in agreement with observations for natural convection under gravity.
机译:浮力引起的流动发生在燃气轮机内部空气系统的旋转腔中,并且由于其固有的不稳定性而特别难以建模。尽管已充分记录了此类流动的全球特征,但尚未报告对不稳定结构和湍流的详细分析。在这项工作中,我们使用高阶数值方法对带有绝热或加热盘的密封旋转腔中的浮力引起的流动进行大涡模拟。有关边界层流动特性和性质的长期存在的问题有了新的见解。分析的重点是显示时间平均量,包括温度和速度波动,以及离心瑞利数对流动结构的影响。使用在系统多次旋转中收集的速度和温度数据,可以对护罩和磁盘边界层进行详细分析。瞬时流动结构包含成对的大的,反向旋转的对流辊,并且显示出圆盘附近的不稳定的层状Ekman边界层是由内部流动结构驱动的。护罩的热边界层的比例约为Ra-1 / 3,这与重力作用下自然对流的观测结果一致。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2019年第2期| 021020.1-021020.9| 共9页
  • 作者单位

    Univ Surrey, Dept Mech Engn Sci, Univ Technol Ctr, Thermofluid Syst, Guildford GU2 7XH, Surrey, England|CAPES Fdn, Minist Educ Brazil, BR-70040020 Brasilia, DF, Brazil;

    Univ Surrey, Dept Mech Engn Sci, Univ Technol Ctr, Thermofluid Syst, Guildford GU2 7XH, Surrey, England;

    Univ Surrey, Dept Mech Engn Sci, Univ Technol Ctr, Thermofluid Syst, Guildford GU2 7XH, Surrey, England;

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