프레온 냉동장치의 과열도에 관한 성능 특성 연구 - 열교환기 타입별 비교 -

A Study on Performance Characteristics due to the Degree of Superheat in Freon Refrigerating System - The Comparison of Heat Exchanger Types -

  • 홍석주 (조선대학교 기계공학과) ;
  • 하옥남 (조선대학교 기계공학과) ;
  • 권일욱 (한국마이콤) ;
  • 윤갑식 (한국 폴리텍V대학) ;
  • 홍성인 (조선대학교 대학원 기계공학과) ;
  • 김진현 (조선대학교 대학원 기계공학과) ;
  • 김양현 (조선이공대학 건축설비학과)
  • Hong, Suck-Joo (Department of Mechanical Engineering, Chosun University) ;
  • Ha, Ok-Nam (Department of Mechanical Engineering, Chosun University) ;
  • Kwon, Il-Wook (Mycom Korea Chemistryf Plant) ;
  • Yun, Kab-Sig (Korea Polytechnic V College) ;
  • Hong, Sung-In (Graduate School, Department of Mechanical Engineering, Chosun University) ;
  • Kim, Jin-Hyun (Graduate School, Department of Mechanical Engineering, Chosun University) ;
  • Kim, Yang-Hyun (Department of Building Equipment Chosun College of Science & Technology)
  • 발행 : 2006.11.10

초록

Nowadays heat exchangers that have been applied for freon refrigerating systems, a shell and tube type condenser, but because of their large size, large space for installation and more amount of refrigerants are needed. Therefore, in this study, we will find the most suitable operating condition through the comparison of performance between the shell & tube type and shell & disk type heat exchanger with R22. The experiments are carried out for the condensing pressure of refrigeration system from 1,500 kPa to 1,600 kPa and for the degree of superheat from 0 to $10^{\circ}C$ at each condensing pressure. As a result of experiment, if the shell & disk type heat exchanger is applied for R22 refrigerating systems, minimized input of refrigerants and space required for installation will be secured, which will have a great contribute to financial improvement for industry.

키워드

참고문헌

  1. Stoecker, W. F., 1982, Refrigeration and Air Conditioning, 2nd ed., McGraw-Hill, New York, pp.1-12, pp.296-307
  2. Kwon, I. W. and Ha, O. K., 2004, The study on performance characteristics of superheating the Suction Vapor in NH3 Refrigeration System, J. Air-Cond. Refrig. Eng., Vol. 16, No.8, pp.756-76l
  3. Kim, Y. S., 2002, The Study of Disk Shell type Heat Exchanger Development, MOCIE
  4. Ohadi, M. M., 1996, Critical Review of Available Correlations for Two- Phase Flow Heat Transfer of Ammonia, lnt. J. Refrigeration, Vol. 19, No.4, pp.279-284
  5. Higuchi, K., 1986, Electronic expansion valve and control, Refrigeration, Vol. 61, pp. 45-52