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Comparison of field measurements and CFD simulation for a naturally ventilated multi-span greenhouse in summer.

机译:夏季自然通风的多跨温室实地测量和CFD模拟的比较。

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The objectives of this study were to verify full scale computational fluid dynamics (CFD) simulations of temperature distributions for a naturally ventilated multi-span greenhouse and to investigate the influence of roof and side vents configurations on the ventilation performance and greenhouse cooling during the summer. The measurements were carried out in an empty 17-span Venlo greenhouse. The outside weather and the inside environment were measured from July 15 to 24, 2004. The air temperatures were measured at five locations in the central vertical plane of the greenhouse. The measured weather conditions such as wind speed, wind direction, outside air temperature and solar radiation were input in the simulations. Three combinations of roof and side vent openings were compared through field measurements and CFD simulations. Results showed that the temperature distributions were similar for all cases when comparing measurements and CFD simulations. For example, when only the roof vents were open, the measured air temperature differences between inside (Tidb) and outside (Todb) at a distance from the east side wall of 5.2, 16.2, 27.2, 38.2 and 49.2 m were 6.6 degrees C, 5.6 degrees C, 4.9 degrees C, 5.5 degrees C and 4.2 degrees C, respectively, and CFD-simulated (Tidb-Todb) were 7.3 degrees C, 5.0 degrees C, 4.3 degrees C, 3.8 degrees C and 3.2 degrees C, respectively. The CFD-simulated ventilation rates indicated that the maximum value was achieved when the roof and side vents were fully open. However, the internal air temperatures in the leeward side of the greenhouse were higher than in the windward side. In contrast, the better temperature uniformity was obtained when the only roof vents were open.
机译:这项研究的目的是验证自然通风的多跨温室的温度分布的全尺寸计算流体动力学(CFD)模拟,并研究屋顶和侧通风口配置对夏季通风性能和温室冷却的影响。测量是在空荡荡的17跨Venlo温室中进行的。从2004年7月15日至24日测量了外部天气和内部环境。测量了温室中央垂直平面上五个位置的气温。在模拟中输入了测得的天气状况,例如风速,风向,外部气温和太阳辐射。通过现场测量和CFD模拟比较了屋顶和侧面通风口的三种组合。结果显示,在比较测量结果和CFD模拟时,所有情况下的温度分布都相似。例如,当仅打开屋顶通风口时,内部( T idb )和外部( T odb )距东侧壁5.2、16.2、27.2、38.2和49.2 m分别为6.6°C,5.6°C,4.9°C,5.5°C和4.2°C,以及CFD模拟( T idb - T odb )分别为7.3摄氏度,5.0摄氏度,4.3摄氏度,分别为3.8摄氏度和3.2摄氏度。 CFD模拟的通风率表明,当顶部和侧面通风口完全打开时,达到了最大值。然而,温室的背风侧的内部空气温度高于迎风侧的内部空气温度。相反,当仅打开屋顶通风口时,可以获得更好的温度均匀性。

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