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首页> 外文期刊>Journal of turbomachinery >Using Unsteady Analysis to Improve the Steady State Computational Fluid Dynamics Assessment of Minimum Flow in a Radial Compressor Stage
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Using Unsteady Analysis to Improve the Steady State Computational Fluid Dynamics Assessment of Minimum Flow in a Radial Compressor Stage

机译:使用非稳态分析改善径向压缩级最小流量的稳态计算流体动力学评估

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摘要

This paper presents a computational fluid dynamics (CFD) study performed to assess the prediction of the minimum stable volume flow for a high Mach number, high head, and high volume flow compressor stage. CFD was run on a "ple slice" or sector stage model in steady-state condition and on a full 360 deg stage model under both steady and unsteady state conditions. The predictions of the minimum stable flow were compared to experimental data. Results showed the CFD performed on the "ple slice" stage model over-predicted the minimum stable flow by 9% compared to the test results, while the transient CFD predicted the minimum stable flow within 5.8%. Flow field comparisons of the impeller between unsteady and steady state CFD revealed that the steady state CFD accurately predicted the flow phenomena until the onset of surge. However, the unsteady flow features could not propagate through the diffuser because of the limitations of the impeller-diffuser interface modeling in the steady state analysis.
机译:本文提出了一种计算流体动力学(CFD)研究,以评估高马赫数,高扬程和高体积流量压缩机级的最小稳定体积流量的预测。 CFD在稳态条件下在“单片”或扇形阶段模型上运行,在稳态和非稳态条件下都在完整的360度阶段模型上运行。将最小稳定流量的预测与实验数据进行比较。结果显示,与测试结果相比,在“多层”阶段模型上执行的CFD高估了最小稳定流量9%,而瞬态CFD则预测了在5.8%内的最小稳定流量。叶轮在非稳态CFD和稳态CFD之间的流场比较表明,稳态CFD可以准确地预测直到喘振开始之前的流动现象。但是,由于稳态分析中叶轮-扩散器界面建模的局限性,非稳态流动特征无法通过扩散器传播。

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  • 来源
    《Journal of turbomachinery》 |2014年第5期|051017.1-051017.12|共12页
  • 作者单位

    Dresser-Rand Company, 95 Highland Avenue,Suite 205,Bethlehem, PA 18017;

    Dresser-Rand Company,500 Paul Clark Drive,Olean, NY 14760;

    Dresser-Rand Company,500 Paul Clark Drive,Olean, NY 14760;

    Dresser-Rand Company,500 Paul Clark Drive,Olean, NY 14760;

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