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首页> 外文期刊>Journal of vibration and control: JVC >Three-dimensional dynamic inflow below the rotor disk based on the finite-state method
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Three-dimensional dynamic inflow below the rotor disk based on the finite-state method

机译:基于有限状态法的转子盘下方三维动态流入

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摘要

This paper studies the problem of dynamic inflow below the rotor disk for skewed flow. With the information from the adjoint inflow equations plus the normal states, one can calculate the velocity in the hemisphere below the rotor disk plane without losing accuracy or convergence rate. The methodology enables one to calculate the velocity below the rotor disk with the finite-state method with the only cost of adding the uncoupled co-states. The three components of inflow are considered here and compared with the results from the convolution integrals. Numerical results in the frequency domain for simple harmonic motion show the effectiveness of the new method in three-dimensional inflow with big skew angle below the rotor disk.
机译:本文研究了偏斜流在转子盘下方的动态流入问题。利用伴随的入流方程式和正常状态的信息,可以计算出转子盘平面下方半球的速度,而不会降低精度或收敛速度。该方法使人们能够用有限状态法来计算转子盘下方的速度,而唯一的代价就是增加了未耦合的共态。这里考虑流入的三个分量,并将其与卷积积分的结果进行比较。简单谐波运动的频域数值结果表明,该新方法在转子盘下方偏斜角较大的三维入流中是有效的。

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