首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Double Linearization Theory of Three- Dimensional Cascades with Vibrating Blades under Spanwise-Nonuniform Mean Loading (Supersonic Leading-Edge Locus Cascade)
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Double Linearization Theory of Three- Dimensional Cascades with Vibrating Blades under Spanwise-Nonuniform Mean Loading (Supersonic Leading-Edge Locus Cascade)

机译:均值非均匀载荷下带有振动叶片的三维叶栅的双线性化理论(超音速前沿轨迹叶栅)

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摘要

The double linearization theory is extended to a three-dimensional straight cascade between parallel-plane end walls operating at supersonic axial velocity. Numerical examples are presented to show unsteady aerodynamic responses and flutter boundaries in correlation with cascade parameters. The three-dimensional effects are evaluated by comparing the three-dimensional theory predictions with the strip theory ones. To attain a large steady loading on the first mode bending flutter boundary, it is advantageous to design blades with angle of attack and camber decreasing from hub to tip. The three-dimensional effects are small for the lightly loaded cascades of the supersonic leading-edge locus.
机译:双重线性化理论扩展到以超音速轴向速度运行的平行平面端壁之间的三维直线级联。数值例子表明了不稳定的空气动力响应和扑翼边界与叶栅参数的相关性。通过将三维理论的预测结果与带状理论的预测结果进行比较,可以评估三维效果。为了在第一模式弯曲颤振边界上获得较大的稳定载荷,设计叶片攻角和外倾角从轮毂到叶尖减小的叶片是有利的。对于超音速前沿轨迹的轻载级联,三维效果很小。

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