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首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Energy saving in greenhouses can be obtained by energy balance-controlled screens.
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Energy saving in greenhouses can be obtained by energy balance-controlled screens.

机译:温室中的节能可以通过能量平衡控制屏实现。

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摘要

The energy screens in two greenhouses, one clad with double acrylic and one with single glass, were controlled by an energy balance model. The parameters in the model were heat transmission coefficients, air temperature in the greenhouse and outdoors, irradiance and a single constant for the solar energy efficiency. The energy consumption, screen movements and daily light integral were compared with a glass greenhouse in which the energy screens were controlled by irradiance. In the greenhouse with light-controlled screens the set point for opening and closing of the screens was 5 Wm-2. The energy-saving screens controlled by the energy balance model opened later and closed earlier than in the greenhouse with light-controlled screens. When using the energy balance model the energy saving was 14% for the glass greenhouse and 41% for the double acrylic greenhouse compared with the glass greenhouse with light-controlled screens. The air temperature was on average similar in the three greenhouses, but when the screens were controlled by energy balance the daily light integral was approximately 10% lower and the number of hours the screens were closed was prolonged with 35% for the glass-covered greenhouse and 25% for the double acrylic-covered greenhouse compared with the greenhouse with light-controlled screens. Energy peaks in connection with operation of the screens were not reduced. During the experiment Begonia elatior, Dendranthema grandiflora (Chrysanthemum), Hedera helix, Helianthus annuus, Gerbera jamesonii and Kalanchoe blossfeldiana were grown in the greenhouses. There was a trend in prolongation of the production time when the plants were grown in the glass greenhouse with energy balance control of the screens. A lower number of flowers or inflorescences were observed for some of the plant species produced in the greenhouses with energy balance-controlled screens.Digital Object Identifier http://dx.doi.org/10.1080/09064711003691926
机译:通过能量平衡模型控制了两个温室中的能量屏,其中一个覆盖着双层丙烯酸,一个覆盖了单个玻璃。模型中的参数是传热系数,温室和室外的空气温度,辐照度和太阳能效率的单一常数。将能量消耗,屏幕移动和每日光积分与玻璃温室进行比较,在玻璃温室中,能量屏幕由辐照度控制。在带有光控屏幕的温室中,用于打开和关闭屏幕的设定点是5 Wm -2 。由能量平衡模型控制的节能屏风比带有光控屏风的温室要晚一些,要早一些。当使用能量平衡模型时,与带有光控屏幕的玻璃温室相比,玻璃温室的能源节约为14%,双层丙烯酸温室的节能为41%。三个温室的空气温度平均相似,但是当通过能量平衡控制屏幕时,玻璃覆盖的温室的每日光积分降低约10%,关闭屏幕的时间延长35%与用光控屏风的温室相比,用丙烯酸覆盖的双层温室的温室效应为25%。与屏幕操作有关的能量峰值并未降低。在实验过程中,美丽的海棠,菊花石end (菊花),常春藤螺旋,向日葵 i>, Jerbera jamesonii 和 Kalanchoe blossfeldiana 在温室中生长。当植物在玻璃温室中生长并控制屏幕能量平衡时,存在生产时间延长的趋势。通过能量平衡控制的屏幕,温室中观察到的一些植物物种的花朵或花序数量较少。数字对象标识符http://dx.doi.org/10.1080/09064711003691926

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