왕복동식 수소압축기의 2단 토출통로 유동해석Numerical Analysis on the 2nd Discharge-passage in Reciprocating Compressor
- Other Titles
- Numerical Analysis on the 2nd Discharge-passage in Reciprocating Compressor
- Authors
- 이경환; 라흐만; 정태휘; 정효민; 정한식; 김철표
- Issue Date
- 2009
- Publisher
- 한국동력기계공학회
- Keywords
- Reciprocating Hydrogen Compressor; Discharge-Passage Flow; Numerical Simulation; Pressure Distribution; Turbulent Kinetic Energy; 왕복동식 수소압축기; 토출구유동; 수치해석; 압력분포; 난류운동에너지; Reciprocating Hydrogen Compressor; Discharge-Passage Flow; Numerical Simulation; Pressure Distribution; Turbulent Kinetic Energy
- Citation
- 동력시스템공학회지, v.13, no.3, pp 27 - 32
- Pages
- 6
- Indexed
- KCI
- Journal Title
- 동력시스템공학회지
- Volume
- 13
- Number
- 3
- Start Page
- 27
- End Page
- 32
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/26826
- ISSN
- 2713-8429
2713-8437
- Abstract
- Numerical analysis information of a complex discharge-passage will be very useful to improve hydrogen compression system. General information about an internal gas flow is presented by numerical analysis approach. Relating with hydrogen compressing system, which have an important role in hydrogen energy utilization, this should be a useful tool to observe the flow quickly and clearly. Flow characteristic analysis, including pressure and turbulence kinetic energy distribution of hydrogen gas from cylinder going to the chamber of a reciprocating compressor are presented in this paper. Discharge-passage model is designed based on real model of hydrogen compressor. Pressure boundary conditions are applied considering the real condition of operating system. The result shows pressure and turbulence kinetic energy are not distributed uniformly along the passage of the hydrogen compressing system. Path line or particles tracks help to demonstrate flow characteristics inside the passage. The existence of vortices and flow direction can be precisely predicted. Based on this result, the design improvement should be done. Consequently, development of the better hydrogen compressing system will be achieved.
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