人工通风堆肥仓cfd模型的建立与验证

H. H. Zanetoni, M. O. Vilela, J. Carlo, Maria Angela de Souza, Charles de Oliveira Paranhos, M. Martins
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引用次数: 0

摘要

计算机模拟可以提供有关动物生产系统中流体流动行为(包括通风)的可靠信息。通风系统对热调节至关重要,因为它有利于动物的舒适度和提高生产力。本研究的目的是开发和验证CFD(计算流体动力学)模型,以分析堆肥仓的通风系统。在空气入口、出口和地板附近使用了更精细的网格,也就是说,在这些区域中,网格的网格数量更大,这使得网格更密集。为了验证,在谷仓中收集了空气速度数据,以与模拟结果进行比较。在谷仓中发现了通风死区,出风口处的平均空气速度增加,温度和空气速度低于文献推荐的最佳值。然而,调整后的模型显示出与测量值的良好拟合,表明这是预测空气速度行为的良好工具。此外,对谷仓内通风死区的检测表明,需要一个补充通风系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and validation of cfd model for compost barn with artificial ventilation
Computer simulation can provide reliable information about fluid flow behavior, including ventilation, in animal production systems. The ventilation system is essential for thermal conditioning, as it favors animal comfort and enhance productivity. The objective of this study was to develop and validate a CFD (Computational Fluid Dynamics) model to analyze the ventilation system in a compost barn. A mesh with greater refinement was used near the air inlet and outlet and the floor, that is, in these regions the mesh number of cells was larger, which makes a denser mesh. For the validation, data on air velocity were collected in the barn to compare with the results of the simulation. Dead zones of ventilation were identified in the barn, there was an increase in the average air velocity at the air outlet, and temperatures and air velocity were found below the optimal recommended by the literature. However, the adjusted model showed good fit with the values measured, indicating that is a good tool to predict the behavior of air velocity. In addition, the detection of ventilation dead zones inside the barn demonstrates the need for a supplementary ventilation system.
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