77 / 2025-04-15 20:12:21
Numerical Study and Thermal Environment Regulation Optimization of Poultry House Ventilation System
CFD,Poultry house,Aerosol,Thermal comfort,Response surface optimization
摘要待审
cahngzeng hu / Hebei Agricultural University
Lihua Li / College of Mechanical and Electrical Engineering;Hebei Agricultural University
In response to the challenges of regulating the thermal environment and the high risk of biological aerosol transmission in closed-scale poultry farming systems, this study focuses on ventilation optimization in poultry houses based on computational fluid dynamics (CFD). First, a comparative numerical simulation was conducted to analyze the airflow characteristics under different fan combination operation modes. The study systematically evaluated the effects of various fan combination schemes on the airflow distribution and biological aerosol diffusion behavior inside the poultry house. Based on these findings, an experimental design was established with fan efficiency, guide vane angle, and inlet temperature as the experimental factors, and the proportion of the thermal comfort zone as the response indicator. A three-factor, three-level response surface simulation experiment was conducted to assess the ventilation process in the poultry house. Subsequently, significance testing and regression equations were established to optimize the parameters. The experimental results indicate that the optimal operational parameters for the ventilation system are: fan efficiency (93%), guide vane angle (9.85°), and inlet temperature (19.09°C), resulting in a maximum thermal comfort zone proportion of 90.59%. Five validation experiments yielded an average thermal comfort zone proportion of 89.02%, with an error of 1.73% compared to the predicted value. The research reveals the impact of fan combination modes on airflow paths in intensive poultry houses and provides a multi-parameter optimization method for environmental regulation. These findings offer theoretical support and technical references for the optimization of environmental control systems in poultry farms.

 
重要日期
  • 会议日期

    10月20日

    2025

    10月23日

    2025

  • 04月15日 2025

    摘要截稿日期

  • 05月01日 2025

    摘要录用通知日期

  • 06月30日 2025

    初稿截稿日期

  • 08月01日 2025

    终稿截稿日期

  • 08月31日 2025

    初稿录用通知日期

  • 10月23日 2025

    注册截止日期

主办单位
International Research Center for Animal Environment and Welfare (IRCAEW)
Chinese Society of Agricultural Engineering (CSAE)
China Agricultural University (CAU)
Rongchang District People’s Government
The National Center of Technology Innovation for Pigs
承办单位
Chongqing Academy of Animal Sciences (CAAS)
Key Lab of Agricultural Engineering in Structure and Environment, Chinese Ministry of Agriculture, Beijing, China
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