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A FE TRANSIENT RESPONSE ANALYSIS MODEL OF A FLEXIBLE ROTOR-BEARING SYSTEM WITH MOUNT SYSTEM TO BASE SHOCK EXCITATION

机译:柔性转子轴承系统的FE瞬态响应分析模型,用安装系统施加底震激励

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Turbomachinery such as turbines, pumps and compressors, which are installed in transportation systems such as warships, submarines and space vehicles, etc., often perform crucial missions and are exposed to potential dangerous impact environments such as base-transferred shock forces. To protect turbomachinery from excessive shock forces, it may be needed to accurately analyze transient responses of rotors, considering the dynamics of mount designs to be applied with. In this study a generalized FE transient response analysis model, introducing relative displacements, is firstly proposed to accurately predict transient responses of a flexible rotor-bearing system with mount systems to base-transferred shock forces. In the transient analyses the state-space Newmark method of a direct time integration scheme is utilized, which is based on the average velocity concept. Results show that for the identical mount systems considered, the proposed FE-based detailed flexible rotor model yields more reduced transient vibration responses to the same shocks than a conventional simple model or a Jeffcott rotor. Hence, in order to design a rotor-bearing system with a more compact light-weighted mount system, preparing against any potential excessive shock, the proposed FE transient response analysis model herein is recommended.
机译:涡轮机,如涡轮机,泵和压缩机,安装在车辆,潜艇和空间车辆等运输系统中,通常都会执行关键的任务,并且暴露于潜在的危险影响环境,例如基础转移的冲击力。为了保护涡轮机免受过度冲击力,可能需要准确地分析转子的瞬态响应,考虑到要应用的安装设计的动态。在该研究中,首先提出了一种引入相对位移的广义Fe瞬态响应分析模型,以准确地预测具有安装系统的柔性转子系统的瞬态响应,以便基站传送的冲击力。在瞬态分析中,利用了直接时间积分方案的状态空间纽马克方法,其基于平均速度概念。结果表明,对于所考虑的相同安装系统,所提出的Fe的详细柔性转子模型产生比传统的简单模型或Jeffcott转子相同的冲击瞬态振动响应。因此,为了设计具有更紧凑的光加压安装系统的转子轴承系统,建议使用本文所提出的Fe瞬态响应分析模型。

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