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APPLICATION OF AEROELASTIC METHODS IN COMPRESSOR CASCADE CONFIGURATIONS USING COMMERCIAL CODE COUPLING

机译:气动弹性方法在商业级联的压缩机级联结构中的应用

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This paper presents the results of fluid structure coupled simulations of compressor blade vibrations of two compressor cascade configurations in order to determine aeroelastic parameters such as aerodynamic damping and the corresponding frequency shift. Therefore a partitioned code coupling approach was employed in order to couple the FE-code ABAQUS with the CFD-code FLUENT via MpCCI (Mesh based Code Coupling Interface) developed by Fraunhofer SCAI. The code coupling is used to compute the unsteady, two-dimensional, inviscid and viscid flow around a NACA 3506 airfoil for blade vibrations in a tor-sional modeshape. This first example is used to validate the results against results from literature. Further on the unsteady, two-dimensional, viscid flow around a research high-pressure compressor airfoil is computed for a bending mode. The results of those computations are implemented into a simplified, structural blisk model approximating the air flow influence by a mechanical model.
机译:本文介绍了两个压缩机级联配置的压缩机叶片振动的流体结构耦合模拟,以确定空气弹性的参数,例如空气动力学阻尼和相应的频移。因此,采用分区代码耦合方法,以将FE-Code ABAQU与FRAUNHOFER SCAI开发的MPCCI(基于网格的代码耦合界面)流畅的CFD-Code。代码耦合用于计算围绕Naca 3506翼型的非定常,二维,无粘性和粘隙流动,用于扭曲模型中的叶片振动。第一个例子用于验证文献结果的结果。此外,在研究高压压缩机翼型周围的不稳定,二维的粘度流动上以弯曲模式计算。这些计算的结果被实现为近似于机械模型的空气流量影响的简化的结构钝模型。

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