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Efficient prediction of classical flutter stability of turbomachinery blade using the boundary element type numerical method

机译:边界元类型数值方法有效预测涡轮机叶片经典颤振稳定性

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In this paper classical flutter phenomena in power turbine rotor is studied. A medium fidelity 2D flow solver based on boundary element method is developed for this purpose. The classical flutter parameters in turbomachinery cascades such as aerodynamic damping at different inter-blade phase angle are estimated using flutter stability analysis flow solver. The flow solver is developed using 2D unsteady potential flow based panel method. The unsteady aerodynamic loading on the vibrating cascade is estimated using a traveling-wave mode oscillation. The simulated aerodynamic damping and pressure coefficient using boundary element method are compared against both experimental data and the computational fluid dynamics model's results at different flow conditions. The boundary element based method results demonstrate good agreement with experimental data. The boundary element based flow solver shows significant reduction in computational time compared to computational fluid dynamics model.
机译:本文研究了动力涡轮转子中的经典颤振现象。为此,开发了一种基于边界元法的中保真二维流求解器。使用颤振稳定性分析流量求解器估算涡轮机械叶栅中的经典颤振参数,例如不同叶片间相角处的空气动力学阻尼。流量求解器是使用基于二维非稳态势流的面板方法开发的。使用行波模式振荡估算振动叶栅上的非稳态空气动力学载荷。使用边界元方法模拟的空气动力学阻尼和压力系数与实验数据和计算流体动力学模型在不同流动条件下的结果进行了比较。基于边界元的方法结果与实验数据吻合良好。与计算流体动力学模型相比,基于边界元素的流求解器显示出显着减少的计算时间。

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