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Performance of a Day/Night Water Heat Storage System for Heating and Cooling of Semi-Closed Greenhouses in Mild Winter Climate

机译:一种日/夜水蓄热系统的性能,用于加热和冷却半封闭温室的温和冬季气候

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A novel system for heating/cooling greenhouses based on air/water heat exchangers connected to a thermally stratified water storage tank was tested in a small greenhouse compartment at the Experimental Station of the Cajamar Foundation in Almería, Spain. The system maintained a closed greenhouse (no natural ventilation) throughout the winter and spring during which a truss tomato crop was grown. Atmospheric CO_2 concentration could be maintained during the daytime allowing for greater net photosynthesis in relation to a reference greenhouse in which traditional natural ventilation was used to control temperature and humidity. Three fine wire heat exchangers (Fiwihex~?) were installed 1 m above the crop when at full development. The heat exchangers allowed for a very efficient transfer of the sensible and latent heat accumulated in the compartment. During the winter, the daytime temperatures were maintained below the ventilation set point (30°C). During the night, the system was able to maintain temperatures above the heating set point (12°C), with stored warm water temperatures between 15 and 17°C after clear days. After cloudy days, with water temperatures between 11 and 13°C, the system could always keep a temperature gradient with the exterior of 4-6°C, enough to maintain greenhouse air temperatures above 8°C the entire night. When seasonal night air temperatures exceeded the heating set point, the hot water at the top of the tank was cooled to the wet bulb temperature by means of an open cooling tower. The cooled water was used for cooling the greenhouse, which allowed for closing the greenhouse for a longer period. The water condensate during the cooling mode, allowed for a high water saving and maintained the relative humidity very constant during the day (around 80%). During the night, humidity was kept at 90% without ever reaching saturation.
机译:用于加热一种新颖的系统/冷却基于连接到一热分层储水罐的空气/水热交换器大棚在卡雅马尔地基在阿尔梅里亚,西班牙的实验站小温室隔室中进行测试。系统维护整个冬季和弹簧,在此期间一个桁架番茄作物生长的封闭的温室(没有自然通风)。大气CO_2浓度可以在白天允许相对于其中使用传统的自然通风来控制温度和湿度的基准温室更大的净光合作用过程中被保持。三分细金属丝的换热器(Fiwihex〜?)分别安装1米作物当在充分发展的上方。允许在车厢内累积的显热和潜热的一个非常有效的传递的热交换器。在冬季,白天温度维持通气设定值(30℃)以下。在夜间,该系统能够保持温度加热设定点(12℃)以上,以15和17℃之间贮存温水的温度后清楚天。后多云天,用11和13之间的水的温度℃时,系统可以始终保持温度梯度用4-6℃的外部,足以保持在8以上温室空气的温度℃的整个晚上。当季节夜晚空气温度超过加热设定点时,在所述槽的顶部中的热水通过一个开放的冷却塔的冷却到湿球温度。使用了冷却水用于冷却温室,这使得用于封闭温室一段较长的时间。在冷却模式期间,冷凝水,允许高的节水和保持相对湿度在白天(约80%)非常恒定。在夜间,湿度保持在90%,而没有达到饱和。

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