¹Ù·Î°¡±â ¸Þ´º

¹Ù·Î°¡±â ¸Þ´º º»¹®³»¿ë ¹Ù·Î°¡±â ¸ÞÀθ޴º ¹Ù·Î°¡±â

ÁÖ¿ä¾È³»

HOME »çÀÌÆ®¸Ê ENGLISH

FONT SIZE

ÆùƮũ±â Å°¿ò 100% 110% 120% 130% 140% ÆùƮũ±â ÁÙÀÓ
¸Þ´ºº¸±â

±¹Á¦ÇмúÁö³í¹®

Á¦¸ñ
(2022) Development of Heat Stress Forecasting System in Mechanically Ventilated Broiler House Using Dynamic Energy Simulation
ÀÛ¼ºÀÏ
2022-10-17
Á¶È¸¼ö
164


(2022) Development of Heat Stress Forecasting System in Mechanically Ventilated Broiler House Using Dynamic Energy Simulation

Journal : agriculture 2022, 12(10), 1666

 
Author :  Jeong-Hwa Cho, In-Bok Lee*, Sang-Yeon Lee, Se-Jun Park, Deuk-Young Jeong, Cristina Decano-Valentin, Jun-Gyu Kim, Young-Bae Choi,  Hyo-Hyeog Jeong, Uk-Hyeon Yeo and Seung-Jae Lee 


Abstract
 
The internal rearing environment of livestock houses has become an important issue in the last few years due to the rapid increase in meat consumption. As the number of days of heat waves increase continuously, problems caused by abnormal weather changes steadily occurred. Thus, the main goal of this study is to develop a technology that can automatically calculate heat stress for livestock by considering weather forecast data. Specifically, a web-based heat stress forecasting system for the evaluation of heat stress in broilers was developed. The field experiments were carried out at the selected broiler house to measure and analyze the external weather, the internal environment, and the ventilation flow rate of fans used in tunnel ventilation. The developed model was validated by comparing the field and simulated thermal environment values. Based on a reliable model, Land-Atmosphere Modeling Package (LAMP) weather forecast data was used to show the stress index on the internal rearing environment with a heat stress index suitable for South Korea. When the users input the farm location, structure and equipment, and rearing information, users responded after receiving heat stress from the broiler raised in a mechanically ventilated broiler house.

Keywords :  broiler house; building energy simulation; forecasting system; heat stress index; temperature humidity index (THI)
 
Download Link :  https://doi.org/10.3390/agriculture12101666
÷ºÎÆÄÀÏ:
÷ºÎÆÄÀÏÀÌ ¾ø½À´Ï´Ù.
´ÙÀ½±Û
(2022) Development of an Air-Recirculated Ventilation System for a Piglet House, Part 2: Determination of the Optimal Module Combination Using the Numerical Model
/ A3EL
(2022) Development of an Air-Recirculated Ventilation System for a Piglet House, Part 2: Determination of the Optimal Module Combination Using the Numerical Model Journal:agriculture 2022, 12(10), 1533 Author:Jun-Gyu Kim, In-Bok Lee*, Sang-Yeon Lee, Deuk-Young Jeong, Young-Bae Choi, Jeong-Hwa ..
ÀÌÀü±Û
(2022) Numerical Analysis of Ventilation Efficiency of a Korean Venlo-Type Greenhouse with Continuous Roof Vents
/ A3EL
(2022) Numerical Analysis of Ventilation Efficiency of a Korean Venlo-Type Greenhouse with Continuous Roof Vents Journal:agriculture 2022, 12(9), 1349 Author:Se-Jun Park, In-Bok Lee*, Sang-Yeon Lee, Jun-Gyu Kim, Young-Bae Choi,Cristina Decano-Valentin, Jeong-Hwa Cho, Hyo-Hyeog Jeong, Uk-..