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Optimization of air flow circulation with branching perforating duct and fan system.

机译:分支射孔管和风扇系统优化了空气流通。

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摘要

Airflow mixing has important role on the environmental control in greenhouse for averaging of temperature, humidity and CO2 concentration. Air mixing performance of branching ducting system was evaluated with computational fluid dynamics (CFD). The branching ducting system for the air heating with the heater, which installing fan, is generally used in small scale greenhouse in Japan. This system has merits on the less distribution and less number of installing fans but has to mind on the pressure loss in duct, which makes air flow distribution in ducts. Numerical model of greenhouse, which has size of 10x5x2 m, installing ducting system was evaluated with CFD simulation model. Simulation conditions were changed by size of holes on duct and fan number and locations. The size of holes limit air flow and the fan locations were influenced to the air flow direction in the greenhouse. System with double fan at opposite corners and large holes for discharge air shows the best performance on mass flow rate and uniformity of flow pattern.
机译:气流混合对于温室温度,湿度和CO 2 浓度的平均控制具有重要作用。用计算流体动力学(CFD)评估了分支管道系统的空气混合性能。带有加热器的空气加热的分支管道系统(装有风扇)通常在日本的小型温室中使用。该系统的优点是分布较少,安装风扇的数量较少,但必须注意管道中的压力损失,这会使管道中的气流分布。利用CFD仿真模型对安装了风管系统的温室尺寸为10x5x2 m的数值模型进行了评估。模拟条件因风管上的孔的大小以及风扇的数量和位置而改变。孔的大小限制了空气流动,并且风扇位置受到了温室中空气流动方向的影响。在对角设有双风扇和大孔的系统可排出空气,在质量流量和流型均匀性方面表现出最佳性能。

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