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FORCED RESPONSE ANALYSES OF MISTUNED RADIAL INFLOW TURBINES

机译:有组织的径向流向涡轮的强迫响应分析

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Radial turbine wheels designed as blade integrated disks (blisk) are widely used in various industrial applications. However, related to the introduction of exhaust gas turbochargers in the field of small and medium sized engines a sustainable demand for radial turbine wheels has come along. Despite those blisks are state of the art, a number of fundamental problems, mainly referred to fluid-structure-interaction and therefore to the vibration behavior, have been reported. Aiming to achieve an.enhanced understanding of fluid-structure-interaction in radial turbine wheels a numerical method, able to predict forced responses of mistuned blisks due to aerodynamic excitation, is presented.In a first step the unsteady aerodynamic forcing is determined by modeling the spiral casing, the stator vanes and the rotor blades of the entire turbine stage. In a second step the aerodynamic damping induced by blade vibration is computed using a harmonic balance technique. The structure itself is represented by a reduced order model being extended by aerodynamic damping effects and aerodynamic forcings. Mistuning is introduced by adjusting the modal stiffness matrix based on results of blade by blade measurements that have been performed at rest.In order to verify the numerical method, the results are compared with strain-gauge data obtained during rig-tests. As a result a measured low engine order excitation was found by modeling the spiral casing. Furthermore a localization phenomenon due to frequency mistuning could be proven. The predicted amplitudes are close to measured data.
机译:设计成叶片集成盘(叶盘)的径向涡轮机叶轮广泛用于各种工业应用中。然而,与在中小型发动机领域中引入废气涡轮增压器相关,对径向涡轮机叶轮的可持续需求也随之出现。尽管这些过时技术是现有技术,但是已经报道了许多基本问题,主要涉及流体-结构-相互作用,因此涉及振动行为。为了增强对径向涡轮机叶轮中流固耦合的理解,提出了一种数值方法,该方法能够预测由于空气动力激发而产生的雾状叶盘的强制响应。整个涡轮机级的螺旋形壳体,定子叶片和转子叶片。在第二步骤中,使用谐波平衡技术计算由叶片振动引起的空气动力学阻尼。结构本身由降序模型表示,该降阶模型通过空气动力学阻尼效应和空气动力学强迫进行扩展。通过基于在静置状态下进行的逐个叶片测量结果来调整模态刚度矩阵,引入了失调现象。为了验证数值方法,将结果与在台架测试期间获得的应变仪数据进行了比较。结果,通过对螺旋壳体进行建模,发现了测得的低发动机阶励磁。此外,可以证明由于频率模糊造成的定位现象。预测幅度接近于测量数据。

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