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Assessment using CFD of the wind direction on the air discharges caused by natural ventilation of a poultry house

机译:使用CFD对禽舍自然通风引起的空气排放进行风向评估

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Air inside poultry houses must be removed on a regular basis to prevent excess of heat, particles and noxious gases that can imperil animals. To cope with this issue, natural ventilation could be an effective method when assisted by accurate predictions. This study investigates air discharges caused by natural ventilation of a poultry house by means of a three-dimensional computational fluid dynamics (CFD) model. It solves the governing equations of momentum, heat and mass transport, radiative transfers and animal-generated heat. Wind directions of 0 degrees, 36 degrees and 56 degrees (0 degrees corresponds to a wind blowing perpendicular to the ridgeline) were investigated; the CFD model predictions achieved a RMSE of 1.2 degrees C and 0.6g[H2O] kg(-1) [dry air] for internal temperature and absolute humidity, respectively, when air blew with an angle of 36 degrees. Air renewal rates (ARR) were 39.5 (+/- 1.9), 34.9 (+/- 2.2) and 33.6 (+/- 1.7) volumes of the building per hour, when air blew at 0 degrees, 36 degrees and 56 degrees, respectively. Such ARR predictions served to know how the gases contained in air would likely spread downstream from the building in order to define regions of potentially high gas concentration that could endanger neighbouring habitable facilities.
机译:必须定期清除禽舍内的空气,以防止过多的热量,颗粒和有毒气体危害动物。为了解决这个问题,在准确的预测辅助下,自然通风可能是一种有效的方法。这项研究通过三维计算流体动力学(CFD)模型研究了禽舍自然通风引起的空气排放。它解决了动量,热量和质量传输,辐射传递和动物产生的热量的控制方程。研究了0度,36度和56度(0度对应于垂直于山脊线的风)的风向;当空气以36度角吹气时,CFD模型预测分别针对内部温度和绝对湿度获得了1.2摄氏度和0.6g [H2O] kg(-1)[干燥空气]的均方根误差。当空气以0度,36度和56度吹气时,建筑物的空气更新率(ARR)为每小时39.5(+/- 1.9),34.9(+/- 2.2)和33.6(+/- 1.7)体积。分别。这样的ARR预测有助于了解空气中的气体如何可能从建筑物的下游扩散,从而确定潜在的高气体浓度区域,从而可能危害邻近的可居住设施。

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