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Path Transmissibility Analysis Considering Two Types of Correlations in Hydropower Stations
Author(s) -
Zhi Baoping,
Zhenyue Ma
Publication year - 2013
Publication title -
journal of applied mathematics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.307
H-Index - 43
eISSN - 1687-0042
pISSN - 1110-757X
DOI - 10.1155/2013/802546
Subject(s) - transmissibility (structural dynamics) , vibration , path (computing) , perturbation (astronomy) , transfer function , computer science , hydropower , control theory (sociology) , vibration isolation , engineering , acoustics , physics , programming language , control (management) , quantum mechanics , artificial intelligence , electrical engineering
A new vibration model is built by introducing the head-cover vibration transfer path based on a previous analysis of the vertical vibration model for hydropower station units and powerhouses. This research focuses on disturbance- and parameter-related transfer paths in a practical situation. In a complex situation, the application of the stochastic perturbation method is expanded using an algebra synthesis method the Hadamard product, and theoretical analyses, and numerical simulations of transfer paths in the new vibration model are carried out through the expanded perturbation method. The path transfer force, the path transmissibility, and the path disturbance ranges in the frequency domain are provided. The results indicate that the methods proposed in this study can efficiently reduce the disturbance range and can accurately analyze the transfer paths of hydraulic-source vertical vibration in hydropower stations

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