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Computational analysis of a multistage axial compressor.

机译:多级轴流压缩机的计算分析。

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摘要

Turbomachines are used extensively in Aerospace, Power Generation, and Oil & Gas Industries. Efficiency of these machines is often an important factor and has led to the continuous effort to improve the design to achieve better efficiency. The axial flow compressor is a major component in a gas turbine with the turbine's overall performance depending strongly on compressor performance. Traditional analysis of axial compressors involves throughflow calculations, isolated blade passage analysis, Quasi-3D blade-to-blade analysis, single-stage (rotor-stator) analysis, and multi-stage analysis involving larger design cycles.;In the current study, the detailed flow through a 15 stage axial compressor is analyzed using a 3-D Navier Stokes CFD solver in a parallel computing environment. Methodology is described for steady state (frozen rotor stator) analysis of one blade passage per component. Various effects such as mesh type and density, boundary conditions, tip clearance and numerical issues such as turbulence model choice, advection model choice, and parallel processing performance are analyzed. A high sensitivity of the predictions to the above was found. Physical explanation to the flow features observed in the computational study are given. The total pressure rise verses mass flow rate was computed.
机译:涡轮机广泛用于航空航天,发电和石油天然气行业。这些机器的效率通常是一个重要因素,并导致人们不断努力改进设计以实现更高的效率。轴流压缩机是燃气轮机的主要部件,其整体性能在很大程度上取决于压缩机的性能。轴流式压缩机的传统分析涉及通流计算,孤立叶片通道分析,准3D叶片到叶片分析,单级(转子-定子)分析和涉及较大设计周期的多级分析。在并行计算环境中,使用3-D Navier Stokes CFD求解器分析通过15级轴向压缩机的详细流量。描述了用于每个组件一个叶片通道的稳态(冻结转子定子)分析的方法。分析了各种影响,例如网格类型和密度,边界条件,尖端间隙和数值问题,例如湍流模型选择,对流模型选择和并行处理性能。发现对上述预测的高度敏感性。给出了对在计算研究中观察到的流动特征的物理解释。计算总压力上升与质量流量的关系。

著录项

  • 作者

    Mamidoju, Chaithanya.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Aerospace.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2014
  • 页码 53 p.
  • 总页数 53
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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