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An integrated dynamic model for evaluating the influence of ground to air heat transfer system on heating, cooling and CO_2 supply in Greenhouses: Considering crop transpiration

机译:一种综合动态模型,用于评估绿色屋中加热,冷却和CO_2供应对空气传热系统的影响:考虑作物蒸腾

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摘要

Nowadays, one of the most important challenges in developing greenhouses is meeting their energy demand. The other challenge is the high water consumption of evaporative-cooling systems in arid and semi-arid regions. In this study, a integrated dynamic model is developed to determine the greenhouse relative humidity, carbon dioxide, and temperature, considering transpiration. The model is applied to a greenhouse utilizing a ground to air heat transfer system, located in the Alborz province of Iran and the results are validated with experimental data. Energy and water performance of the greenhouse are evaluated for the case study greenhouse. Then, the model is applied to a greenhouse (similar to the case study) in different climate zones of Iran to study the impact of climatic conditions on greenhouse performance. The results are presented for both cases of presence and absence of plant in greenhouses. Transpiration causes the heating/cooling demand of the greenhouse to increases/decreases by 17-40%/ 63-71% from climate 1 (cold and dry-humid climatic conditions) to climate 4 (mild and hot-humid climate regions). The water consumption of the evaporative-cooling system decreases by 17-49% from climate 1 to 4 when transpiration is taken into consideration.(c) 2021 Elsevier Ltd. All rights reserved.
机译:如今,开发温室最重要的挑战是满足他们的能源需求。其他挑战是干旱和半干旱地区蒸发冷却系统的高耗水量。在这项研究中,开发了一种集成的动态模型,以确定考虑蒸腾的温室相对湿度,二氧化碳和温度。该模型应用于利用地面到空中传热系统的温室,位于伊朗·伊尔尔兹省的Alborz省,结果用实验数据验证。为案例研究温室评估温室的能量和水性能。然后,该模型应用于伊朗不同气候区的温室(类似于案例研究),以研究气候条件对温室性能的影响。结果表明了在温室中的植物的存在和缺失的情况。蒸腾导致温室的加热/冷却需求从气候1(冷和干潮湿气候条件)到气候4(温和和热潮湿的气候区)增加/降低17-40%/ 63-71%。当考虑蒸腾时,蒸发冷却系统的耗水量从气候1到4减少17-49%。(c)2021 elestvier有限公司保留所有权利。

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