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Study on Design Technology of Heat Pump Cycle for High Temperature Performance  

Kim, Jong-Ryul (R&D Center, Finetex EnE, Inc.)
Kim, Seok-Young (R&D Center, Finetex EnE, Inc.)
Kim, Yong-Min (R&D Center, Finetex EnE, Inc.)
Lee, Kong-Hoon (Korea Institute of Machinery and Materials)
Kim, Ook-Joong (Korea Institute of Machinery and Materials)
Yi, Sung-Chul (Hanyang University)
Jung, Chi-Young (Hanyang University)
Kim, Jong-Ryeol (Tongmyong University)
Publication Information
Abstract
About 55% of total energy is consumed in the industrial division. The industrial heat pump application will show magnificent energy saving effect as well as higher cost efficiency because of larger energy consuming volume of each facility and longer operation hour and higher stability against seasonal temperature change. Over 90% of dryer for industrial usage has hot wind heat source and hot wind dryer is the representative type covering 68.7% while its 30 ~ 50% lower heat efficiency causes lots of energy loss by exhaust air. Re-usage of exhaust air can improve energy efficiency of dryer because 68% heat energy or 78% of hot air lose in exhaust air. Therefore, high temperature heat pump dryer can be the best alternative. Comparing to the existing dryer with 30% ~ 50% energy efficiency, newly developing high temperature heat pump dryer will enhance energy efficiency up to 60% ~ 80% efficiency. In this paper, heat pump system for high temperature was designed, constructed and tested. The results have shown that system COPh is estimated as 3.3.
Keywords
Heat Pump Dryer; Energy Efficiency; High Temperature Heat Pump; Heat Pump Cycle Design; Coefficient of Performance;
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