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Verification of Computational Fluid Dynamic Temperature Simulations in a Full-Scale Naturally Ventilated Greenhouse

机译:大型自然通风温室中计算流体动态温度模拟的验证

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Incompressible, isothermal airflows in a naturally ventilated multi-span greenhouse with plants were analyzed numerically by a computational fluid dynamics (CFD) simulation program using the standard k- e turbulence model. The air temperature distributions of the CFD model showed a maximum error of ± 3.2% for west and east winds compared to air temperatures measured in the greenhouse for similar conditions. The CFD results indicated that the natural ventilation rates of the greenhouse were 0.9 and 0.3 greenhouse volumes per minute (G.V. min -1 ), respectively, for a west wind of 2.5 m s -1 and an east wind of 0.9 m s -1 . The maximum recorded air temperature difference between inside and outside the greenhouse was 3.5°C during the hottest (34.7°C) recorded sunny day during the study. The air temperatures across the 33 m × 35 m greenhouse were acceptably uniform, with the maximum temperature difference among six inside air temperatures being only 2.9°C. The results indicated that the CFD numerical model was a very good tool for evaluating the relative performance of the natural ventilation system
机译:通过使用标准k-e湍流模型的计算流体动力学(CFD)模拟程序,对带有植物的自然通风多跨温室中的不可压缩等温气流进行了数值分析。与类似条件下在温室中测得的气温相比,CFD模型的气温分布显示出西风和东风的最大误差为±3.2%。 CFD结果表明,对于西风为2.5 ms -1 )。 sup>和0.9 ms -1 的东风。在研究期间晴天记录的最热(34.7°C)期间,温室内外最大记录的气温差为3.5°C。 33 m×35 m温室内的空气温度均匀一致,六个室内温度之间的最大温差仅为2.9°C。结果表明,CFD数值模型是评估自然通风系统相对性能的很好工具。

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