Author:
Zhang Yan,Liu Jingting,Yang Xinzhen,Li Hongmin,Chen Songying,Lv Wei,Xu Wenchao,Zheng Jianping,Wang Dianyuan
Abstract
AbstractHigh-pressure multistage centrifugal pumps have been widely used in modern industry and required low vibration and noise. In this study, modal analysis of the rotor system of a seven-stage centrifugal pump was carried out numerically by introducing fluid force to ensure that the centrifugal pump would not resonate. A vibration test bench was established to investigate the characteristics with flow rates of 0.8Qd, 1.0Qd, and 1.2Qd, and the vibration data of ten measuring points were collected. The period of the vibration at the bearing was found to be around 20 ms and the period was related to the shaft frequency (SF) and the blade passing frequency (BPF). The vibration of the pump casing was mainly determined by the SF, two times the SF, and two times the BPF. Mechanical motion is the main factor causing pump vibration, and fluid unstable motion is also an important cause.
Funder
Natural Science Foundation of Shandong Province
National Natural Science Foundation of China-Shandong Joint Fund
Key Research and Development Project of Shandong Province, China
Publisher
Springer Science and Business Media LLC
Cited by
3 articles.
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