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EXPERIMENTAL STUDY OF AERODYNAMIC AND STRUCTURAL DAMPING IN A FULL-SCALE ROTATING TURBINE

机译:全尺寸旋转涡轮机空气动力学和结构阻尼的实验研究

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Damping in turbomachinery blades has been an important parameter in the study of forced response and high cycle fatigue, but because of its complexity the sources and physical nature of damping are still not fully understood. This is partly due to the lack of published experimental data and supporting analysis of real rotating components. This paper presents the results of a unique experimental method and data analysis study of multiple damping sources seen in actual turbine components operating at engine conditions. The contributions of both aerodynamic and structural damping for several different blade vibration modes, including bending and torsion, were determined. Results of the experiments indicated that aerodynamic damping was a large component of the total damping for all modes. A study of structural damping as a function of rotational speed was also included to show the effect of friction damping at the blade and disk attachment interface. To the best of the authors' knowledge, the present paper is the first report of independent and simultaneous structural and aerodynamic damping measurement under engine-level rotational speeds.
机译:涡轮机械刀片中的阻尼是在强制响应和高周期疲劳的研究中的一个重要参数,但由于其复杂性,阻尼的来源和物理性质仍然没有完全理解。这部分是由于缺乏公布的实验数据和实际旋转部件的支持分析。本文介绍了在发动机条件下运行的实际涡轮机部件中看到的多个阻尼源的独特实验方法和数据分析研究的结果。测定了用于几种不同刀片振动模式的空气动力学和结构阻尼的贡献,包括弯曲和扭转。实验结果表明,空气动力学阻尼是所有模式的总阻尼的大部分。还包括作为旋转速度函数的结构阻尼的研究,以显示摩擦阻尼在叶片和盘附件界面处的效果。据作者所知,本文是发动机级转速下独立和同时结构和空气动力学阻尼测量的第一报告。

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