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Temporally and spatially resolved flow in a two-stage axial compressor. Part 2: Computational assessment

机译:在两级轴向压缩机中在时间和空间上解析的流动。第2部分:计算评估

摘要

Fluid dynamics of turbomachines are complicated due to aerodynamic interactions between rotors and stators. It is necessary to understand the aerodynamics associated with these interactions in order to design turbomachines that are both light and compact as well as reliable and efficient. The current study uses an unsteady, thin-layer Navier-Stokes zonal approach to investigate the unsteady aerodynamics of a multi-stage compressor. Relative motion between rotors and stators is made possible by use of systems of patched and overlaid grids. Results have been computed for a 2 1/2-stage compressor configuration. The numerical data compares well with experimental data for surface pressures and wake data. In addition, the effect of grid refinement on the solution is studied.
机译:涡轮机的流体动力学由于转子和定子之间的空气动力学相互作用而变得复杂。有必要了解与这些相互作用相关的空气动力学,以设计轻巧紧凑,可靠高效的涡轮机械。当前的研究使用非稳态薄层Navier-Stokes带状方法来研究多级压缩机的非稳态空气动力学。转子和定子之间的相对运动可通过使用拼凑和叠置的网格系统来实现。计算结果为2 1/2级压缩机配置。数值数据与表面压力和尾流数据的实验数据进行了很好的比较。另外,研究了网格细化对解决方案的影响。

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