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Investigation of bio-aerosol dispersion in a tunnel-ventilated poultry house

机译:隧道通风家禽屋中生物气溶胶分散的研究

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Bio-aerosol concentrations in poultry houses must be controlled to provide adequate air quality for both birds and workers. High concentrations of airborne bio-aerosols would affect the environmental sustainability of the production and create environmental hazards to the surroundings via the ventilation systems. Previous studies demonstrate that several factors including the age of the birds, the housing configuration, the humidity and temperature would strongly affect the indoor concentration of bio-aerosols. However, limited studies are performed in the literature to investigate the bio-aerosol dispersion pattern inside poultry buildings. In order to fill a gap of the understanding of the bio-aerosol dispersion behavior, experimental measurements of the indoor bioaerosol distribution are performed in a tunnel-ventilated poultry house in this paper. Meanwhile a three-dimensional computational fluid dynamics (CFD) model is built and validated to further investigate the effect of flow pattern, turbulence and vortex on the dispersion and deposition of the bio-aerosols. Furthermore, bioaerosols with various diameters are also examined in the CFD model. It is found that higher concentrations of bio-aerosols are detected at the rear part of the house and strong turbulent flow resulting from the ventilation inlets enhances the diffusion and dispersion of bio-aerosols. Local vortex or disturbed flow is responsible for higher local concentration due to the re-suspension of settled bio-aerosols, which suggests that careful attentions should be paid to these locations during cleaning and disinfection. Results from present study contribute to the optimization of design and operation of the poultry houses from the standing point of reducing airborne bioaerosol concentrations.
机译:必须控制家禽房中的生物气溶胶浓度,为鸟类和工人提供足够的空气质量。高浓度的空气传播的生物气溶胶将影响生产的环境可持续性,并通过通风系统对周围环境产生环境危害。以前的研究表明,几个因素包括鸟类的年龄,壳体配置,湿度和温度会强烈影响生物气溶胶的室内浓度。然而,在文献中进行了有限的研究,以研究家禽建筑物内的生物气溶胶分散模式。为了填补理解生物气溶胶分散行为的差距,本文在隧道通风家禽房中进行室内生物溶胶分布的实验测量。同时建立并验证了三维计算流体动力学(CFD)模型,以进一步研究流动模式,湍流和涡流对生物气溶胶的分散和沉积的影响。此外,还在CFD模型中检查具有各种直径的生物溶胶。结果发现,在房屋的后部检测到较高浓度的生物气溶胶,并且由通风入口产生的强烈湍流增强生物气溶胶的扩散和分散。由于沉降的生物气溶胶的重新悬架,本地涡流或受干扰的流动负责局部集中,这表明应在清洁和消毒期间应对这些地点支付仔细的注意。目前研究的结果有助于优化从减少空气传播的生物溶胶浓度的常设点的家禽屋的设计和操作。

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