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Thermo-mechanical-dynamic coupling analysis on cold compressor rotor

机译:冷压缩机转子的热机械动态耦合分析

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Cold compressor rotor works in complex thermal filed, which endures huge temperature differences from room temperature to low-temperature. To study the effect of thermal field on deformation and dynamics of cold compressor rotor, a thermo-mechanical-dynamic coupling analysis is carried out by finite element software ANSYS. Firstly, a thermal analysis on the entire compressor is carried out by CFX and the temperature distribution is obtained. Secondly, a static structural analysis considering thermal loads and contact effect is performed. The thermal stress and deformation are obtained. Finally, a pre-stress modal analysis in working thermal field is carried out. The results show that: The axial distance between blade tip and thrust disc reduces by 117.41 urn. The first two natural frequencies of the cold compressor rotor have a slight improvement by less than 2.16% and higher order natural frequency is more sensitive to thermal effect.
机译:冷压缩机转子在复杂的热量归档中工作,这持续到从室温到低温的巨大温度差异。为研究热场对冷压缩机转子变形和动力学的影响,通过有限元软件ANSYS进行热机械动态耦合分析。首先,通过CFX进行整个压缩机的热分析,并获得温度分布。其次,考虑热负荷和接触效果的静态结构分析。获得热应力和变形。最后,执行工作热场中的预应力模态分析。结果表明:叶片尖端和推力盘之间的轴向距离通过117.41 URN减少。冷压缩机转子的前两个固有频率小于2.16%,更高阶的固有频率对热效应更敏感。

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