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A Time History Method for Analysing Operational Piping Vibrations

A Time History Method for Analysing Operational Piping Vibrations
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摘要 Vibration failure of piping is a serious problem and a matter of concern for safety and reliability of plant operations. Fatigue is the main cause of such failures. Due to the complexity of the phenomenon no closed form design solutions are available. In our study an analytical technique based on the theory of vibrations in the time domain has been presented. Using the inverse theory, the problem has been reduced to a system of Volterra Integral equations to be solved simultaneously at every time step. The solution of the inverse problem may be used in the conventional method to calculate stresses and end reactions which are important from the perspective of engineering design and condition monitoring. The method is robust, simple and can be easily adopted by practicing engineers. Vibration failure of piping is a serious problem and a matter of concern for safety and reliability of plant operations. Fatigue is the main cause of such failures. Due to the complexity of the phenomenon no closed form design solutions are available. In our study an analytical technique based on the theory of vibrations in the time domain has been presented. Using the inverse theory, the problem has been reduced to a system of Volterra Integral equations to be solved simultaneously at every time step. The solution of the inverse problem may be used in the conventional method to calculate stresses and end reactions which are important from the perspective of engineering design and condition monitoring. The method is robust, simple and can be easily adopted by practicing engineers.
作者 Subrata Saha
机构地区 Department of Piping
出处 《World Journal of Mechanics》 2012年第6期325-333,共9页 力学国际期刊(英文)
关键词 VIBRATION Inverse PROBLEM Direct PROBLEM Time History Fatigue Failure VIBRATION Screening CRITERION Integral Equation Frequency DAMPING Vibration Inverse Problem Direct Problem Time History Fatigue Failure Vibration Screening Criterion Integral Equation Frequency Damping
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