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Thermal and ammonia concentration gradients in a rabbit barn with two ventilation system designs

机译:具有两种通风系统设计的兔舍中的热和氨浓度梯度

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Rabbit barns are of economic importance in central Mexico, where rabbit breeders use rustic buildings for production. In such barns, climate conditioning is mostly based on natural ventilation (NV) where the lack of a well-designed NV system may be a limiting factor. In this study, computational fluid dynamics was used to analyse the performance of the NV system in a 24 x 4 x 4.8 m typical Central Mexico rabbit barn with a density of 20 rabbits m-2 of cage. The barn included both side vents at 1.2 m in height from the ground. Results indicated exchange rates of 0.052 and 2.9 x 10-4 m3 m-2 s-1 when the wind direction was simulated as orthogonal and parallel to the side vents, respectively, suggesting the orthogonal direction favoured the exchange rate. However, such conditions produced an accumulation of ammonia underneath the rabbit cages. Thus, a design modification including a lower inlet vent was analysed. Such modification substantially decreased the concentration gradients of temperature and ammonia.
机译:兔子谷仓在墨西哥中部具有重要的经济意义,那里的兔子饲养员使用质朴的建筑进行生产。在这样的谷仓中,气候调节主要基于自然通风(NV),而缺乏完善设计的NV系统可能是一个限制因素。在这项研究中,使用计算流体动力学来分析NV系统在24 x 4 x 4.8 m典型的中部墨西哥兔谷仓(密度为20只兔m-2笼)中的性能。谷仓的两个侧面通风口距离地面1.2 m高。结果表明,当风向分别模拟为正交和平行于侧通风口时,交换率分别为0.052和2.9 x 10-4 m3 m-2 s-1,这表明正交方向有利于交换率。然而,这样的条件在兔子笼子下面产生了氨的积累。因此,分析了包括下部进气口的设计变型。这种修饰大大降低了温度和氨的浓度梯度。

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