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AN ASSESSMENT OF DIFFERENT BOUNDARY CONDITIONS IN A NATURALLY VENTILATED VENLO-TYPE GREENHOUSE

机译:自然通风的Venlo型温室中不同边界条件的评估

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This paper presents a parametric study of the indoor climate of a four span greenhouse subjected to natural ventilation. The effect of different heat fluxes through the greenhouse covering on the airflow patterns as well as temperature and velocity distributions were determined. Appropriate effective heat flux boundary conditions were introduced in the CFD model to investigate temperature and velocity distributions at plant level. Initially, three different simulations were done to represent zero wind speed conditions. Secondly, a velocity of lm/s was specified at the domain inlet boundary. Results indicated that for all cases, the velocity distribution was heterogeneous and quite high for wind still days around midday. Temperature distributions were more homogeneous, decreased with the presence of a wind. Results indicated that a parametric value of 20% of the maximum daily solar radiation approximates previously simulated wall temperatures. It was also concluded that design changes such as additional openings including side and/or more roof ventilators be utilized to enhance ventilation on wind still days, as well as the warmer parts of the day.
机译:本文介绍了四跨温室自然通风条件下室内气候的参数研究。确定了通过温室覆盖物的不同热通量对气流模式以及温度和速度分布的影响。在CFD模型中引入了适当的有效热通量边界条件,以研究工厂级的温度和速度分布。最初,进行了三种不同的模拟来表示零风速条件。其次,在域入口边界处指定了lm / s的速度。结果表明,在所有情况下,速度分布都是不均匀的,并且对于正午左右的静止风天来说,速度分布都很高。温度分布更均匀,随着风的存在而降低。结果表明,每日最大日辐射量的20%的参数值近似于先前模拟的壁温。得出的结论是,在静止风天以及当天较温暖的部分,应采用设计更改,例如增加包括侧通风口和/或更多屋顶通风机的开口,以增强通风。

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