地中海夏季炎热气候下禽舍自上而下自然通风的有效性调查

Mariem Fezai, Bourhan Tashtoush, Marouen Ghoulem, Khaled Elmoueddeb, Mouna Elakhdar
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摘要

本研究采用计算流体力学(CFD)对多层鸡舍的通风效率和气流模式进行了研究。捕风器作为自然通风系统的利用是主要关注的领域。通过ANSYS Fluent的CFD仿真与实验数据对比,验证了计算结果的正确性。研究结果表明,在捕风器内和整个建筑物内的气流速度上,CFD计算结果与实验测试结果吻合良好,导致气流分布均匀,养鸡区域没有湍流。这种设置通过保持一致和稳定的温度剖面,为蛋鸡提供了可接受的舒适水平。基于捕风器的模型比机械窗通风的温度均匀性更好。该研究还强调了在整个建筑中保持适当湿度水平的重要性,以确保蛋鸡的舒适度和生产力。通过与替代通风模型的比较,突出了基于捕风器的系统在温度分布和气流控制方面的优势。这些结果强调了使用自然通风系统的重要性,如捕风器,以创造最佳的通风条件,并为蛋鸡提供舒适和生产环境(导致温度从29°C降至19.85°C,低而均匀的风速范围为0 m/s至0.7 m/s)。实际应用为提高家禽农场的动物健康和生产力,一种有效和环保的方法是安装带有集风器的自然通风系统。这种设置通过改善空气质量、调节温度和微调通风,为动物创造了最佳条件。此外,它还通过降低能源成本和倡导环境友好型管理,使农业实践与严格的环境标准保持一致,促进家禽设施的整体可持续性。
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Investigation of the effectiveness of top-down natural ventilation of a poultry building in a hot-summer mediterranean climate
In this study, computational fluid dynamics (CFD) was used to examine the efficiency of ventilation and airflow patterns in a multi-level layer hen house. The utilization of windcatchers as a natural ventilation system was the main area of focus. By comparing CFD simulations with experimental data using ANSYS Fluent, the results were validated. The findings showed good agreement in airflow velocity within the windcatchers and throughout the entire building between the CFD calculations and the experimental tests, resulting in uniform airflow distribution and the absence of turbulence in the area where the chickens were kept. This setup provided the layer hens with an acceptable level of comfort by maintaining a consistent and steady temperature profile. The windcatcher-based model demonstrated better temperature uniformity than mechanical window ventilation. The study also emphasized the importance of maintaining appropriate humidity levels throughout the building to ensure the comfort and productivity of layer hens. The advantages of the windcatcher-based system in terms of temperature distribution and airflow control were highlighted by comparison with an alternative ventilation model. These results underscore the importance of using natural ventilation systems, such as windcatchers, to create optimal ventilation conditions and provide layer hens with a comfortable and productive environment (resulting in a temperature reduction from 29°C to 19.85°C with a low and uniform air velocity ranging from 0 m/s to 0.7 m/s at cage level). Practical application An effective and eco-friendly approach to enhance animal health and productivity in poultry farms is to install a natural ventilation system with wind collectors. This setup creates optimal conditions for the animals by improving air quality, regulating temperature, and fine-tuning ventilation. Additionally, it promotes overall sustainability in poultry facilities by lowering energy costs and advocating for environmentally friendly management, aligning agricultural practices with stringent environmental standards.
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