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Simulated and Measured Effect of Rectangular Obstructions on Carbon Dioxide Gas Dispersion in a Scaled Swine Building

机译:矩形猪场中矩形障碍物对二氧化碳气体扩散的模拟和测量效果

摘要

Gas dispersion from shallow manure storage pits was experimentally measured and mathematically modeled in a 1:6-scale ventilation chamber. The chamber represents a geometrically scaled model of a production swine grower facility. Gas injection was simulated from shallow pits using carbon dioxide (CO2). The results indicate significant differences in gas concentration between the animal-occupied zone (AOZ) and human-occupied zones (HOZ), especially at ventilation rates representative of mild weather conditions. AOZ CO2 concentrations were 12 times higher than HOZ during minimum ventilation conditions and six times higher during mild weather ventilation conditions. Large variations in normalized CO2 concentration were found as a function of both vertical location from the floor and horizontal location from the inlet, especially at vertical locations representative of the AOZ. Rectangular obstructions, physically representing the overall size of 60 kg pigs, did significantly (p u3c 0.01) affect gas dispersion at high ventilation rates, but did not significantly (p u3e 0.05) affect gas dispersion at low ventilation rates, implying that airflow patterns near the AOZ were significantly affected by the presence of rectangular obstructions at high ventilation rates. The mathematical model provided excellent prediction of the measured results. Vertical profiles were closely predicted with large gradients near the floor, in agreement with the measured results.
机译:在1:6比例的通风室内对浅粪便存储坑中的气体扩散进行了实验测量和数学建模。该腔室代表了生猪种植者设施的几何比例模型。使用二氧化碳(CO2)从浅坑中模拟了注气。结果表明,在动物占据区(AOZ)和人类占据区(HOZ)之间的气体浓度存在显着差异,尤其是在代表温和天气条件的通风速率下。在最低通风条件下,AOZ的CO2浓度比HOZ高12倍,在温和天气通风条件下,则高6倍。发现归一化CO2浓度的大变化与底部的垂直位置和入口的水平位置有关,尤其是代表AOZ的垂直位置。矩形障碍物,物理上代表60公斤猪的总大小,在高通风率下确实显着(p <0.01)影响气体扩散,但在低通风率下没有显着(p <0.05)影响气体扩散,表明气流在高通风率下,矩形障碍物的存在显着影响了AOZ附近的模式。数学模型为测量结果提供了出色的预测。垂直剖面可以通过靠近地面的大坡度进行精确预测,与测量结果一致。

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