전동형 진동식 압축기 토출 밸브의 동적해석Dynamic Analysis of a Discharge Valve for Electrodynamic Oscillating Compreessor

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Discharge valve mechanism for an electrodynamic-oscillating compressor is different from that of a conventional reciprocating compressor. It has a larger discharge port area, heavier valve mass and stiffer valve spring comparing with the reciprocating one. Since the motion of piston is not kinematically restricted as in conventional reciprocating compressors, the stroke of the piston can change sensitively with supplied voltage and load. Thus piston can impact with discharge valve occasionally. This work deals on dynamic analysis of a discharge valve considering all of those different characteristics. Impact is considered by a spring-mass model, and the pressure fluctuation at the both sides of the valve is also included considering the discharge port area and valve spring preload. It is assumed that piston moves in the region of between top and bottom dead center not by calculating piston motion from an electrodynamic equation but by getting values through experiment. Discharge pressure fluctuation is calculated using Helmholtz modeling. Finally, dynamic model for a discharge valve is constructed. In order to validate the model analysis results, the valve motion is experimentally measured and compared with analysis.
Publisher
한국소음진동공학회
Issue Date
2000-08
Language
Korean
Citation

한국소음진동공학회논문집, v.10, no.4, pp.615 - 622

ISSN
1598-2785
URI
http://hdl.handle.net/10203/76127
Appears in Collection
ME-Journal Papers(저널논문)
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