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(2023) ¾Ð·Â¼Õ½ÇÀ» °í·ÁÇÑ ¾çµ·½Ã¼³ÀÇ ¹ÝÆóȸ·Î ȯ±â½Ã½ºÅÛÀÇ È¯±â·® ¹× È¥ÇÕºñÀ² Æò°¡
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2023-02-28
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169


(2023) ¾Ð·Â¼Õ½ÇÀ» °í·ÁÇÑ ¾çµ·½Ã¼³ÀÇ ¹ÝÆóȸ·Î ȯ±â½Ã½ºÅÛÀÇ È¯±â·® ¹× È¥ÇÕºñÀ² Æò°¡
Evaluation of Ventilation Rate and External Air Mixing Ratio in Semi-closed Loop Ventilation System of Pig House Considering Pressure Loss

ÇÐȸÁö : Journal of the Korean Society of Agricultural Engineers, Vol. 65, No. 1. pp. 61-72

ÀúÀÚ : ¹ÚÀ¯¹Ì, ±è¶ô¿ì*, ±èÁرÔ

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The increase in the rearing intensity of pigs has caused deterioration in the pig house’s internal environment such as temperature, humidity, ammonia gas, and so on. Traditionally, the widely used method to control the internal environment was through the manipulation of the ventilation system. However, the conventional ventilation system had a limitation to control the internal environment, prevent livestock disease, save energy, and reduce odor emission. To overcome this problem, the air-recirculated ventilation system was suggested. This system has a semi-closed loop ventilation type. For designing this system, it was essential to evaluate the ventilation rates considering the pressure loss of ducts. Therefore, in this study, pressure loss calculation and experiment were conducted for the quantitative ventilation design of a semi-closed loop system. The results of the experiment showed that the inlet through which external air flows should always be opened. In addition, it was also found that for the optimum design of the semi-closed loop ventilation system, it was appropriate to install a damper or a backflow prevention device rather than a ventilation fan.
 
Keywords: External air mixing ratio; piglet house; pressure loss; semi-closed loop ventilation system

Download Link : https://doi.org/10.5389/KSAE.2023.65.1.061
 
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(2019)BES ¼öÄ¡¸ðµ¨À» ÀÌ¿ëÇÑ »çÀ° ¹Ðµµº° °¡±Ý·ù °í¿Â ½ºÆ®·¹½º Æò°¡ Evaluation of thermal stress of poultry according to stocking densities using mumerical BES model ÇÐȸÁö :Journal of the Korea Academia-Industrial, Vol. 20, No. 1. pp. 456-463 ÀúÀÚ : ±Ç°æ¼®, ÇÏÅÂȯ*, ÃÖÈñö, ±èÁ¾º¹, ÀÌÁØ¿±, ÀüÁß..
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(2022)°­Á¦ ȯ±â½Ä À°°è»ç ³»ºÎ ¿­È¯°æ ±ÕÀϼº Æò°¡ Internal Thermal Environment Uniformity Analysis of Mechanically Ventilated Broiler House ÇÐȸÁö :Journal of the Korean Society of Agricultural Engineers, Vol. 64, No. 6. pp. 65-75 ÀúÀÚ : ±è´ÙÀÎ, ÀÌÀκ¹*, ÀÌ»ó¿¬, ¹Ú¼¼ÁØ, ±èÁرÔ, Á¶Á¤È­, Á¤È¿Çõ,..