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Evaluation of a novel greenhouse design for reduced cooling loads during the hot season in subtropical regions

机译:亚热带地区炎热季节减少温室负荷的新型温室设计评估

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Greenhouses provide an optimized growth environment for plants. However, providing this environment is energy intensive. In subtropical regions, most of this energy is to cater for the required cooling. The cooling demand is mainly attributed to the entry of excess solar radiation and heat gain through the greenhouse walls. This study proposes a thermally insulated greenhouse that allows the entry of optimum solar radiation levels through negative linear Fresnel lenses located in its roof. The lenses distribute the solar radiation over the plant rows. The performance of the proposed greenhouse in terms of providing the required levels of solar radiation for plant growth and the reduction in cooling load were assessed using ray tracing simulations and cooling load calculations. The results showed that the recommended optimum amount of solar radiation required for tomato growth can be achieved during the hot season inside the proposed greenhouse. In comparison to a conventional greenhouse, the monthly cooling load of the proposed greenhouse was about 80% less. Therefore, the proposed greenhouse can achieve the benefits of a closed greenhouse while overcoming the high cooling demand drawback, in subtropical regions.
机译:温室为植物提供了优化的生长环境。但是,提供这种环境会消耗大量能源。在亚热带地区,大部分能量都用于满足所需的冷却。制冷需求主要归因于多余的太阳辐射和通过温室壁吸收的热量。这项研究提出了一种隔热温室,该温室可以通过位于屋顶的负线性菲涅尔透镜进入最佳太阳辐射水平。透镜将太阳辐射散布在植物行上。使用射线追踪模拟和冷却负荷计算,评估了拟建温室在提供植物生长所需的太阳辐射水平和降低冷却负荷方面的性能。结果表明,在拟建温室内的高温季节可以达到番茄生长所需的推荐最佳太阳辐射量。与常规温室相比,拟议温室的每月制冷量减少了约80%。因此,在亚热带地区,所提出的温室可以在克服高制冷需求的缺点的同时获得封闭温室的好处。

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