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The Experimental Analysis of Vibration Monitoring in System Rotor Dynamic with Validate Results Using Simulation Data

机译:使用仿真数据验证结果的系统转子动态振动监测的实验分析

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摘要

There is a growing tendency today to extract information about the prognostic parameters based on system analysis through various diagnostic techniques to assess the health of the plant or equipment. Vibration monitoring helps in reducing the machine down time. A vibration signature measured at the external surface of machine or at any other suitable place contains a good amount of information to reveal the running condition of the machine. Considering the importance of vibration monitoring in the rotating machinery fault diagnostics, it has been applied in this paper. Effects of modal parameters like natural frequency, mode shapes, and damping, misalignments have been studied. Balancing is usually an expensive and laborious procedure and a balancing system would be beneficial for motor engine and power generation application. In this research, there have been identified unbalance parameters that exist in rotating machinery and develop a finite-element model of rotating dynamics system to create a mathematical model of the system from the test data and subsequently obtaining the unbalanced parameters. During this study, the raw data obtained from the experimental results (Smart Office software) are curve fitted by theoretical data regenerated from simulating it using finite element (ANSYS 12) model for comparisons. The experimental analysis used thus far is called Modal Testing, a well-known and widely used technique in research and industry to obtain the Modal and Dynamic response properties of structures. The technique has recently been applied to rotating structures and some research papers been published, however, the full implementation of Modal Testing in active structures and the implications are not fully understood and are therefore in need of much further and more in-depth investigations. The aim is to find a system identification methodology using the analytical/computational techniques and update the model using experimental techniques already established for passive structures but to active rotating structures, which subsequently help to carry out health monitoring as well as further design and development in rotating machinery.
机译:根据系统分析,通过各种诊断技术评估植物或设备的健康,提取有关预后参数的信息,提取有关预后参数的信息。振动监测有助于减少机器停机时间。在机器外表面或任何其他合适的地方测量的振动特征包含良好的信息,以揭示机器的运行状态。考虑到振动监测在旋转机械故障诊断中的重要性,它已应用于本文。模态参数等自然频率,模式形状和阻尼,未对准的影响。平衡通常是昂贵且费力的程序,平衡系统将有利于电动机发动机和发电应用。在该研究中,已经确定了旋转机械中存在的不平衡参数,并开发旋转动力系统的有限元模型,从测试数据创建系统的数学模型,然后获得不平衡参数。在本研究期间,从实验结果(智能办公软件)获得的原始数据是由使用有限元(ANSYS 12)模型进行比较的理论数据被重新生成的曲线来进行比较。迄今为止所使用的实验分析称为模态测试,是一种众所周知的和广泛使用的研究和工业技术,以获得结构的模态和动态响应性质。该技术最近应用于旋转结构,并且一些研究论文已发布,然而,在有源结构中充分实现了模态测试,并且不完全理解,因此需要更进一步和更深入的研究。目的是使用分析/计算技术找到系统识别方法,并使用已经为被动结构建立的实验技术更新模型,而是用于主动旋转结构,随后有助于进行健康监测以及在旋转方面进一步的设计和开发机械。

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