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Airflow assessment in a naturally ventilated greenhouse equipped with wind towers: numerical simulation and wind tunnel experiments

机译:气流评估在具有风塔的天然通风温室:数值模拟和风洞实验

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In this study, the air change rate and airflow distribution inside a greenhouse equipped with wind towers were analyzed using Computational Fluid Dynamics (CFD) simulations, considering different wind speeds (1-5m/s) and incident angles (0-45 degrees). The validation methods included smoke visualization, hot wire velocity point measurements, and Particle Image Velocimetry (PIV) measurements. The visualized and simulated flow regimes exhibited fair agreement. The average discrepancy between the hot wire velocity point measurements and simulated results was about 7.96%. The predicted vector fields in the inlet and outlet wind towers demonstrated good qualitative agreement with the corresponding PIV measurements. The discrepancy between the predicted and measured maximum air velocity in the inlet tower was 15%, while it was 3% in the outlet wind tower. At an external wind speed of 3 m/s and normal incidence angle, the average velocity of the airflow entering the greenhouse was 0.65 m/s (about one air change per minute), while the average air velocity in the greenhouse was 0.44 m/s. The average air velocity inside the greenhouse at a crop height (1 m) ranged from 0.3 to 1.8 m/s, which is within the optimum range of recommended air velocities for greenhouses. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本研究中,使用计算流体动力学(CFD)模拟分析了配备有风塔的温室内的空气变化率和气流分布,考虑不同的风速(1-5米/秒)和入射角(0-45度)。验证方法包括烟雾可视化,热线速度点测量和粒子图像速度(PIV)测量。可视化和模拟的流动制度表现出公平的协议。热线速度点测量和模拟结果之间的平均差异约为7.96%。入口和出口风塔中的预测矢量场与相应的PIV测量结果显示出良好的定性协议。入口塔中预测和测量的最大空气速度之间的差异为15%,而出口风塔在3%中为3%。在外部风速度为3米/秒和正常的入射角,进入温室的气流的平均速度为0.65米/秒(约每分钟一次空气变化),而温室的平均空气速度为0.44米/ s。在作物高度(1米)的温室内的平均空气速度范围为0.3至1.8米/秒,这在温室的推荐空气速度范围内。 (c)2019 Elsevier B.v.保留所有权利。

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