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首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >Dynamic response of a shaft of a Pelton turbine due to impact of water jet
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Dynamic response of a shaft of a Pelton turbine due to impact of water jet

机译:佩尔顿汽轮机轴的动力响应因水射流冲击而导致

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Performance and reliability of any rotating machine can be studied by proper dynamic analysis of the machine. In this regard, this paper presents the method to study the dynamic response of the shaft of a Pelton turbine due to the impact of water jet. Equations of motion for the bending vibration of Pelton turbine assembly, in two transverse directions, is developed by using Lagrange equation of motion with the help of assumed modes method. The Pelton wheel is assumed as a rigid disk attached on Euler-Bernoulli shaft. The impact provided by the water jet is represented in the form of Fourier series. Critical speeds of the system are determined by performing free vibration analysis and presented in the form of Campbell diagram. The response plots due to impact of water are generated by performing forced response analysis. Both free and forced analyses are carried out by considering first three modes of vibration.
机译:通过对机器的适当动态分析,可以研究任何旋转机器的性能和可靠性。在这方面,本文介绍了研究佩尔顿涡轮机轴的动态响应由于水射流的影响。通过使用假定模式方法的帮助,通过使用Lagrange方程开发了佩尔顿涡轮机组件弯曲振动的运动方程。佩尔顿车轮被认为是连接在欧拉 - 伯尔努利轴上的刚性盘。水射流提供的影响以傅立叶系列的形式表示。系统的临界速度通过执行自由振动分析来确定并以坎贝尔图的形式呈现。通过进行强制响应分析来产生由于水的影响而导致的响应图。通过考虑前三种振动模式,进行自由和强制分析。

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