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A Study of Simulation on the Refrigerated Warehouse System Based on the Cold Energy of Lng Using the Pro-Ii Simulator

LNG 냉열을 이용한 냉장·냉동 창고 모사에 관한 연구

  • HAN, DANBEE (Department of Environment-Energy, The University of Suwon) ;
  • KIM, YOONJI (Department of Environment-Energy, The University of Suwon) ;
  • YEOM, KYUIN (Department of Environment-Energy, The University of Suwon) ;
  • SHIN, JAERIN (EUGENE Super Freeze Co. Institute of Technology) ;
  • BAEK, YOUNGSOON (Department of Environment-Energy, The University of Suwon)
  • 한단비 (수원대학교 환경에너지공학과) ;
  • 김윤지 (수원대학교 환경에너지공학과) ;
  • 염규인 (수원대학교 환경에너지공학과) ;
  • 신재린 (유진초저온 기술연구소) ;
  • 백영순 (수원대학교 환경에너지공학과)
  • Received : 2017.07.26
  • Accepted : 2017.08.30
  • Published : 2017.08.30

Abstract

When Liquified Natural Gas (LNG) is vaporized into NG for industrial and household usage, tremendous cold energy was transferred from LNG to seawater during phase-changing process. This heat exchanger loop is not only a waste of huge cold energy, but will cause thermal pollution to the coastal fishery area also when cold water was re-injected into the sea. In this study, an innovation design has been performed to reclaim the cold energy for -35 to $62^{\circ}C$ refrigerated warehouse. Conventionally, this was done by installing mechanical refrigeration systems, necessitating tremendous electrical power to drive temperature. A closed loop LNG heat exchangers in series was designed to replace the mechanical or vapor-compression refrigeration cycle by process simulator. The process simulation software of PRO II with provision has been used to simulate this process for various conditions, what to effect on cold energy and used energy for re-liquefaction and evaporation process. In addition, through analysis the effect of the change of LNG supply pressure on sensible and latent heat, optimum operational conditions was suggested for LNG cold energy warehouse.

Keywords

References

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