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首页> 外文期刊>Spanish Journal of Agricultural Research >Experimental evaluation of a radiant heated floor coupled to an air-to-water heat pump for the cooling of greenhouses
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Experimental evaluation of a radiant heated floor coupled to an air-to-water heat pump for the cooling of greenhouses

机译:结合空气-水热泵的温室辐射散热地板的实验评估

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This paper describes the experimental cooling of a greenhouse in Madrid (Spain) using a radiant heated floor (RHF) coupled to an air-water heat pump (HP). Two cooling scenarios were studied over the summers of 2005 and 2006: natural ventilation + a shading screen (control system), and natural ventilation + a shading screen + an RHF (concrete) coupled to an air-water heat pump (i.e., in cooling mode; nominal power, 34.1 W m–2). Using the difference between the outside and inside air temperatures, it was concluded that at 0.5 m above the floor the RHF system reduced the temperature by 1.1°C in 2005 and 0.8°C in 2006. Both cooling scenarios were compared with other cooling technologies: the use of the natural ventilation + shading + RHF gave a smaller air temperature difference than fogging at a height equal to or lower than 0.5 m. A model based on the heat pump performance curves was constructed to predict its power consumption and good predictions of the variation over the day were obtained. The power consumption of the heat pump was 104.8 Wh m–2 d–1 (from 13:00 to 18:00 h) under our test conditions in Madrid. The RHF-HP system may only be appropriate for cooling greenhouses under certain circumstances, e.g., when growing high value crops or when cost is not a limiting factor, as its initial investment cost is about € 38 m–2.
机译:本文介绍了使用辐射加热地板(RHF)与空气-水热泵(HP)耦合对马德里(西班牙)温室进行的实验冷却。在2005年和2006年夏季研究了两种制冷方案:自然通风+遮阳网(控制系统),自然通风+遮阳网+与空气-水热泵耦合的RHF(混凝土)(即,在冷却中)模式;标称功率,34.1 W m–2)。利用外部和内部空气温度之间的差异,得出的结论是,在地面上方0.5 m处,RHF系统使温度在2005年降低了1.1°C,在2006年降低了0.8°C。两种制冷方案均与其他制冷技术进行了比较:使用自然通风+遮阳+ RHF可以使空气温度差小于等于或小于0.5 m的高度起雾。构建了基于热泵性能曲线的模型来预测其功耗,并获得了一天中变化的良好预测。在马德里的测试条件下,热泵的功耗为104.8 Wh m–2 d–1(从13:00到18:00 h)。 RHF-HP系统仅在某些情况下才适合冷却温室,例如,当种植高价值作物或成本不是限制因素时,因为其初始投资成本约为3800万欧元–2。

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