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Three-dimensional through-flow modelling of axial flow compressor rotating stall and surge

机译:轴流压缩机旋转失速和喘振的三维通流建模

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This paper presents a three-dimensional through-flow approach based on the cylindrical Euler equations incorporating a body force method. Blade performance is captured through a mixture of empirical correlations and a novel reverse flow treatment. The code is the first application of a physically correct Godunov solver to three-dimensional rotating stall and surge modelling. This solver ensures the accurate calculation of inter-cell fluxes unlike in typical modern CFD codes in which the non-linear convective terms are linearised. Validation consists of modelling a low speed three-stage axial compressor in all operating regions, recreating the reverse flow, rotating stall and forward flow characteristics with good agreement to experimental data. Additional comparisons are made against rotating stall cell size and speed, to which good agreement is also shown. The paper ends with some full surge cycle simulations modifying both the tank volume after the compressor and the level of inlet distortion applied. Both tank volume and level of distortion have been found to affect the type of instability developed. The development of this code is a step forward in compressor rotating stall and reverse flow modelling and allows recreation of a full compressor map at a significantly low computational cost when compared to commercially available 3D CFD codes. (C) 2018 The Authors. Published by Elsevier Masson SAS.
机译:本文提出了一种基于圆柱欧拉方程并结合了体力法的三维通流方法。叶片性能是通过经验相关性和新颖的逆流处理的混合获得的。该代码是物理正确的Godunov解算器在三维旋转失速和喘振建模中的首次应用。与典型的现代CFD代码中非线性对流项被线性化的方法不同,该求解器可确保精确计算小区间通量。验证包括在所有工作区域中对低速三级轴流压缩机进行建模,并与实验数据完全吻合,以产生逆流,旋转失速和正向流动特性。针对旋转失速室的大小和速度进行了其他比较,也显示出很好的一致性。本文以一些完整的喘振周期模拟作为结尾,这些喘振周期模拟同时修改了压缩机后的油箱容积和所应用的进气口变形水平。已经发现储罐的体积和变形程度都会影响所产生的不稳定类型。与商用3D CFD代码相比,此代码的开发是压缩机旋转失速和逆流建模方面的一大进步,并允许以低得多的计算成本重新生成完整的压缩机图。 (C)2018作者。由Elsevier Masson SAS发布。

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