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Theoretical Heat Flow Analysis and Vibration Characteristics During Transportation of PCS(Power Conversion System) for Reliability

전력변환장치 캐비넷에서의 내부발열 개선을 위한 열유동 분석 및 유통안전성 향상을 위한 진동특성 분석

  • 주민정 (한국건설생활환경시험연구원) ;
  • 서상욱 (한국건설생활환경시험연구원) ;
  • 오재영 (한국건설생활환경시험연구원) ;
  • 정현모 (경북과학대학교 물류패키징과) ;
  • 박종민 (부산대학교 바이오산업기계공학과)
  • Received : 2022.08.22
  • Accepted : 2022.08.24
  • Published : 2022.08.31

Abstract

PCS needs to freely switch AC and DC to connect the battery, external AC loads and renewable energy in both directions for energy efficiency. Whenever converting happens, power loss inevitably occurs. Minimization of the power loss to save electricity and convert it for usage is a very critical function in PCS. PCS plays an important role in the ESS(Energy Storage System) but the importance of stabilizing semiconductors on PCB(Printed Circuit Board) should be empathized with a risk of failure such as a fire explosion. In this study, the temperature variation inside PCS was reviewed by cooling fan on top of PCS, and the vibration characteristics of PCS were analyzed during truck transportation for reliability of the product. In most cases, a cooling fan is mounted to control the inner temperature at the upper part of the PCS and components generating the heat placed on the internal aluminum cooling plate to apply the primary cooling and the secondary cooling system with inlet fans for the external air. Results of CFD showed slightly lack of circulating capacity but simulated temperatures were durable for components. The resonance points of PCS were various due to the complexity of components. Although they were less than 40 Hz which mostly occurs breakage, it was analyzed that the vibration displacement in the resonance frequency band was very insufficient. As a result of random-vibration simulation, the lower part was analyzed as the stress-concentrated point but no breakage was shown. The steel sheet could be stable for now, but for long-term domestic transportation, structural coupling may occur due to accumulation of fatigue strength. After the test completed, output voltage of the product had lost so that extra packaging such as bubble wrap should be considered.

Keywords

Acknowledgement

본 연구는 산업통상자원부와 한국산업기술진흥원의 "지역혁신클러스터육성(R&D, P0016220)"사업의 지원을 받아 수행된 연구 결과이다.

References

  1. 김응삼. 2015. 신재생에너지와 ESS용 전력변환장치의 표준화 및 기술기준. 전력전자학회지 20(2): 31-35
  2. 정태복. 2013. ESS기능을 갖는 직류배전용 전력변환시스템 통합운전. 성균관대학교 석사학위 논문
  3. 조문택, 이충식, 문석환. 2021. 최적 일체형 태양광 발전용 전력 변환장치 개발. 한국차세대컴퓨팅학회지 17(1): 65-72
  4. 정훈, 권진경, 윤홍선, 이원옥, 김영근 이현동. 2010. CFD 시뮬레이션을 농산물 저온저장고내의 온도분포 균일화 연구. 한국식품저장유통학회지 17(1): 16-21.
  5. 이상익, 홍세운, 최원, 김락우, 이인복. 2018. CFD해석을 통한 후지 사과 CA 저장고 내의 적정 CO2 농도 조성 검토. 한국농공학회지 60(3): 71-81.
  6. 윤홍선, 권진경, 정훈, 이현동, 김영근, 윤남규. 2007. 냉장 컨테이너 내부의 공기유동 및 열전달 현상에 대한 CFD 시뮬레이션, 바이오시스템공학회지 32(6): 422-429.
  7. Moureh, J., Menia, N. and Flick, D. 2002. Numerical and experimental study of airflow in a typical refrigerated truck configuration loaded with pallets. Computer and Electronics in Agriculture 34: 25-42 https://doi.org/10.1016/S0168-1699(01)00178-8
  8. Hoang, M.L., Verboven, P., Baermaeker, J.D., and Nicolai, B.M. 2000. Analysis of air flow in a cold store by means of computational fluid dynamics. International Journal of Refrigeration 23: 127-140 https://doi.org/10.1016/S0140-7007(99)00043-2
  9. 김수현, 박상훈, 이민아, 정현모. 2021. 이론적 열유동 및 랜덤 진동 해석을 적용한 EPS 보냉용기의 포장설계. 한국포장학회지 27(3): 175-180
  10. KS T 5055: 2020, 포장-수송포장-택배 유통 포장화물의 시험 방법, 한국표준협회
  11. 오재영, 서상욱, 임미진, 2022, 국내 택배화물의 안전운송 및 적정포장을 위한 Field-to-Lab 시험방법 연구, 한국포장학회지 28(2); 127-132.
  12. Park, J., Choi, S. and Jung, H.M. 2020. Measurement and analysis of vibration levels for truck transport environment in Korea. Applied Sciences 10(19): 6754. https://doi.org/10.3390/app10196754
  13. 박종민, 최동수, 황성욱, 정현모. 2019. 적정 포장설계를 위한 수출용 배의 공진특성. 한국포장학회지 25(3): 125-130.