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Sonic Anemometry to Measure Natural Ventilation in Greenhouses

机译:音速风速仪测量温室的自然通风

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摘要

The present work has developed a methodology for studying natural ventilation in Mediterranean greenhouses by means of sonic anemometry. In addition, specific calculation programmes have been designed to enable processing and analysis of the data recorded during the experiments. Sonic anemometry allows us to study the direction of the airflow at all the greenhouse vents. Knowing through which vents the air enters and leaves the greenhouse enables us to establish the airflow pattern of the greenhouse under natural ventilation conditions. In the greenhouse analysed in this work for Poniente wind (from the southwest), a roof vent designed to open towards the North (leeward) could allow a positive interaction between the wind and stack effects, improving the ventilation capacity of the greenhouse. The cooling effect produced by the mass of turbulent air oscillating between inside and outside the greenhouse at the side vents was limited to 2% (for high wind speed, uo ≥ 4 m s−1) reaching 36.3% when wind speed was lower (uo = 2 m s−1).
机译:目前的工作已经开发出一种通过声波风速测定法研究地中海温室自然通风的方法。此外,已经设计了特定的计算程序,以能够处理和分析实验期间记录的数据。音速风速仪使我们能够研究所有温室通风口的气流方向。知道空气通过哪个通风口进入和离开温室,使我们能够确定自然通风条件下温室的气流模式。在这项针对Poniente风(从西南方向)进行分析的温室中,设计成向北(朝下)开口的屋顶通风口可以使风与烟囱效应之间产生积极的相互作用,从而提高温室的通风能力。在侧面通风口处,温室内部和外部之间的湍流空气湍流产生的冷却效应被限制为2%(对于高风速,uo≥4 ms -1 ),当达到36.3%时风速较低(uo = 2 ms -1 )。

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