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Experimental and Computational Analysis of the Swirling Flow Generated by an Axial Counter-Rotating Swirler in a Rectangular Model Chamber Using Water Test Rig

机译:用水试验台矩形模型室中轴向旋转旋转旋流产生的旋转流动的实验和计算分析

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摘要

This paper reports the particle image velocimetry (PIV) measurement of swirling flow in a confined rectangular-shaped model combustion chamber. Water is used as the working fluid, and the average profiles of axial, radial, and magnitudes of velocity are given. Flow behavior is investigated and a rebound angle term is defined to investigate the direct effects of the noncircular chamber shape. Flow behavior near the walls is discussed in detail, as are other important swirling flow features such as the appearance of corner and central toroidal recirculation zones. Additionally, experimental data are compared with simulation results. Analyses were performed via commercial software STAR-CCM+ version 9.0. The large eddy simulation (LES) dynamic Smagorinsky subgrid scale, realizable k-e model, and k-w shear-stress transport (SST) detached eddy version were used as simulation tools. Three different test filters of 1.0, 2.2, and 3.0 were applied to the LES to identify improvements in accuracy. The overall best turbulence model is compared to the experimental result and reliability of such model is evaluated. The ability of such model was profound within the upstream and to some extent unreliable in downstream.
机译:本文报道了屏蔽矩形模型燃烧室中旋流流动的粒子图像速度(PIV)测量。用作工作流体,并给出轴向,径向和速度幅度的平均曲线。研究了流动行为,并定义了回弹角度术语来研究非晕腔形状的直接影响。详细讨论了墙壁附近的流动,以及其他重要的旋转流动特征,例如角落和中心环形再循环区域的外观。另外,将实验数据与仿真结果进行了比较。通过商业软件Star-CCM + 9.0版进行分析。大型涡流仿真(LES)动态SMAGORINSKY SubLIG刻度,可实现的K-E型号和K-W剪切应力传输(SST)分离涡流版本用作仿真工具。将3.0,2.2和3.0的三个不同的测试过滤器应用于LES以识别准确性的改进。将整体最佳湍流模型与实验结果进行比较,评估这种模型的可靠性。这种模型的能力在上游的上游和在某种程度上不可靠。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2017年第8期|081501.1-081501.12|共12页
  • 作者单位

    Graduate School of Chonbuk National University Fluid Engineering Laboratory Jeonju 54896 South Korea;

    Graduate School of Chonbuk National University Fluid Engineering Laboratory Jeonju 54896 South Korea;

    Division of Mechanical System Engineering of Chonbuk National University Jeonju 54896 South Korea;

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