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Research on torsional vibration characteristics of reciprocating compressor shafting and dynamics modification

机译:往复式压缩机轴承轴承和动力学改性的扭转振动特性研究

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摘要

In this paper, the torsional vibration characteristics of the high-speed and high-power reciprocating compressor shafting is investigated based on the modal superposition method (MSM) and the sensitivity analysis (SA) is implemented for its dynamics modification. Firstly, the torsional vibration system model of the shafting is established by using the finite element method and modern CAD modeling technology. Then, the natural frequencies and mode shapes are solved by transforming the undamped free vibration system into standard eigenvalue problem. The harmonic excitation coefficient matrix is acquired from the periodic non-harmonic excitation by using Fourier expansion. In addition, MSM is used to solve the transient response, and the contribution of each order modal is investigated. Finally, based on SA of natural frequencies relative to structural parameters, a structural dynamics modification is proposed in terms of the actual situation. Results show that the natural frequency of torsional vibration system of the compressor shafting complies with API standard, and resonance hazard will not occur. The major modes that contribute to the torsional vibration response are first three modes, meanwhile the dynamics modification based on SA can effectively suppress the amplitude of torsional vibration.
机译:本文基于模态叠加法(MSM)研究了高速和高功率往复式压缩机轴系的扭转振动特性,实施了灵敏度分析(SA),以实现其动力学修改。首先,通过使用有限元方法和现代CAD建模技术建立轴系的扭转振动系统模型。然后,通过将无法自由振动系统转化为标准特征值问题来解决自然频率和模式形状。通过使用傅里叶扩展,从周期性非谐波激发获取谐波激励系数矩阵。此外,MSM用于解决瞬态响应,并调查每个订单模态的贡献。最后,基于相对于结构参数的自然频率的SA,在实际情况下提出了一种结构动力学修改。结果表明,压缩机轴承座的扭转振动系统的固有频率符合API标准,并不会发生共振危害。有助于扭转振动响应的主要模式是前三种模式,同时基于SA的动力学改性可以有效地抑制扭转振动的幅度。

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