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ÇÏÀ̺긮µå°ÇÁ¶±â °³¹ßǰ¿¡¼ÀÇ ¼º´ÉÇâ»ó / Performance Improvement in Newly Developed Hybrid Dryer / 6-B Ưº°¼¼¼Ç : ¿¡³ÊÁö Àý¾à(°øÁ¶ºÎ¹®) |
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¹Ú½ÂÅÂ(Seungtae Park) ; ÀÌÁ¤È£(Jeongho Lee) ; À¯°æ·Ï(Kyungrok Yoo) ; ±è¿µÀÏ(Youngil Kim) ; Á¤±¤¼·(Kwangseop Chung) ; À¯¿µ¿ì(Youngwoo Yu) |
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´ëÇѼ³ºñ°øÇÐȸ 2015³âµµ ÇϰèÇмú¹ßÇ¥´ëȸ (2015-06) |
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½ÃÀÛÆäÀÌÁö(451) ÃÑÆäÀÌÁö(4) |
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ÇÏÀ̺긮µå°ÇÁ¶±â ; ³Ãdz°ÇÁ¶±â ; µ¥½ÃÄÆ®°ÇÁ¶±â ; ¼ö»ê¹°°ÇÁ¶ ; Hybrid Dryer ; Cold-Air Dryer ; Desiccant Dryer ; Marine Products Drying |
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At the beginning of the hybrid dryer development, the #1.1 prototype, the drying system part was located at the top of the drying chamber. But, in the #4.1 prototype, it was moved to the side of drying chamber for the energy saving. As a result of seaweed drying tests with the #1.1 prototype, coefficient of drying was 0.803kg/kWh(130.6%) in the hybrid drying and 0.615 kg/kWh(100%) in the cold-air drying. With the #4.1 prototype, coefficient of drying was 0.938kg/kWh(162.5%) in the hybrid drying and 0.577kg/kWh (100%) in the cold-air drying. In other words, the #4.1 prototype is better than #1.1 prototype in the drying performance. |