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http://dx.doi.org/10.5293/KFMA.2009.12.6.041

Expanding the MCS of Refinery Process Compressor through Operating-Speed Balancing at 10,500 rpm  

Lee, An-Sung (한국기계연구원)
Kim, Byung-Ok (한국기계연구원)
Publication Information
Abstract
This paper deals with the operating-speed (high-speed) balancing of a refinery gasoline HDS (hydrodesulfurization) process recycle-gas 8-stages compressor rotor. A low-speed balancing condition of the rotor was measured as maintaining the G2.5 level. But an inspection run of operating-speed balancing condition, using tilting-pad journal bearings of actual use, showed that while it could be continuously-operated safely at a rated speed of 10,500 rpm, the rotor would not be able to run over 11,000 rpm as the vibration increased very sharply, approaching 11,000 rpm. In order to cure that a series of operating-speed balancing, which first calculated balance correction-weights by applying the influence coefficient measured and calculated at 10,500 rpm and then implemented correction works, was carried-out. The final operating-speed balancing results showed that the vibrations at the bearing pedestals represented very good levels of 0.2 mm/s by decreasing to as much as the 1/10 of the original vibrations and particularly, even at a targeted maximum continuous operating speed, MCS, of 11,500 rpm the vibrations represented about 1 mm/s, which is the operating-speed balancing vibration specification of API. Therefore, the expansion of MCS was successfully accomplished through the operating-speed balancing.
Keywords
Operating-Speed Balancing; High-Speed Balancing; Influence Coefficient; Amplification Factor; 2nd Critical Speed; Rotordynamics;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
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2 Mark S. Darlow, 1988, 'Balancing of High-Speed Machinery,' Springer-Verlag
3 API Standard 617 7th Ed, 2002, Axial and Centrifugal Compressors and Expander -compressors for Petroleum, Chemical and Gas Industry Services
4 API Recommended Practice 684 2nd Ed, 2005, API Standard Paragraphs Rotordynamic Tutorial: Lateral Critical Speeds, Unbalance Response, Stability, Train Torsionals, and Rotor Balancing
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