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Numerical Analysis of Effect of Vibrating Nozzle on the Suction Valve of a Linear Compressor

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한국기계기술학회지 (Journal of the Korean Society of Mechanical Technology)
한국기계기술학회 (Korean Society of Mechanical Technology)
초록

In this study, a vibrating nozzle using the waste vibration energy of the compressor body was installed in the suction flow path to improve the efficiency of the compressor through the pre-compression. To this end, the behavior of the suction valve according to the vibrating nozzle and the mass flow rate of the refrigerant entering the compression chamber were numerically analyzed. The results showed that the mass flow rate increased proportionally as the angle of the vibration nozzle increased. Among the profile shapes of the vibration nozzle, the concave or straight shape showed the highest mass flow rate. Considering the ease of machining, the straight shape is more favorable. On the other hand, as the operating frequency and stroke of the vibration nozzle increased, the mass flow rate also increased proportionally. It can be seen that the largest nozzle angle, operating frequency, and stroke are favorable for pre-compression unless the suction flow is restricted.. In the future, it is necessary to apply the vibrating nozzle system to an actual compressor model to experimentally check the compressor's cooling power, compression work and EER.

저자
  • 이영림(공주대학교) | LEE YOUNG LIM (Member, Professor, Div. of Mech. and Auto. Eng., Kongju National University) Corresponding author
  • 박진규(공주대학교 기계자동차공학부 기계설계공학전공) | Jin Kyu Park (Member, Major in Mechanical Design Eng., Div. of Mech. and Auto. Eng., Kongju National University)