首页> 外文会议>ASME turbo expo >EXPERIMENTAL INVESTIGATION OF THE FORCING FUNCTION AND FORCED PITCHING BLADE OSCILLATIONS OF AN ANNULAR COMPRESSOR CASCADE IN TRANSONIC FLOW
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EXPERIMENTAL INVESTIGATION OF THE FORCING FUNCTION AND FORCED PITCHING BLADE OSCILLATIONS OF AN ANNULAR COMPRESSOR CASCADE IN TRANSONIC FLOW

机译:环流中环形压气机叶栅强迫作用和俯仰桨叶振动的实验研究

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The interaction between rotor blades and non-rotating sta-tor blades is the most significant blade excitation mechanism in turbomachines. It is well documented in various numerical and experimental investigations for turbine cascades. Like turbine blades, also compressor blades are excited as well by potential fields of the following stator, the downstream flow field of the sta-tor of the previous stage or struts and incoming flow distortions.In this paper, experimental investigations of the excitation of a transonic compressor cascade due to gust generating struts upstream are presented. The experiments were performed in the test facility of non-rotating annular cascades at EPFL using a compressor cascade, which consists of 20 blades (NACA3506 profile) mounted on elastic spring suspensions for torsional motions at the midchord. For the non-rotating annular cascade, relative flow conditions similar to those present in a rotating cascade are generating by swirling the flow in front of the test test section.The struts are rotating in order to create a periodic excitation upstream of the cascade. The so generated pressure dristri-bution on the cascade's profiles as well as the measured vibration response of the blades are presented and compared for a pure subsonic and a transonic flow case.
机译:转子叶片和非旋转定子叶片之间的相互作用是涡轮机中最重要的叶片激励机制。在涡轮叶栅的各种数值和实验研究中都有很好的记录。像涡轮机叶片一样,压缩机叶片也被随后的定子的势场,前一级的定子的下游流场或支柱和进入的流动畸变所激发。 在本文中,提出了由于上游阵风产生的跨音速压缩机级联的激励而进行的实验研究。实验是在EPFL的非旋转环形叶栅的测试设备上使用压缩机叶栅进行的,该压缩机叶栅由20个叶片(NACA3506轮廓)组成,该叶片安装在弹性弹簧悬架上以在中弦处进行扭转运动。对于非旋转环形叶栅,通过在测试测试部分的前面使流体涡旋而产生类似于旋转叶栅中存在的相对流动条件。 支柱旋转以便在叶栅上游产生周期性的激励。在纯亚音速和跨音速流情况下,显示并比较了叶栅轮廓上如此产生的压力分布以及测得的叶片振动响应。

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