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Greenhouse cooling in summer in Finland - preliminary results of climatecontrol and plant response.

机译:芬兰夏季的温室降温-气候控制和植物响应的初步结果。

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摘要

Despite the country's Northern location, greenhouse production in Finland suffers from high temperatures in summertime and the plant production could be improved by cooling greenhouses. To investigate the effects of a novel direct air-water heat exchanger cooling system on greenhouse climate conditions and plant growth, a trial was carried out with cucumber (Cucumis sativus L. cv. Cumuli) cultivated from June to September. In the cooling compartment, the cooling system was capable of maintaining air temperature below the maximum set point without any need for shading or ventilation, when the global radiation was less than 600 to 700 Wm-2. In the control compartment, temperature was controlled by means of ventilation alone. The cooling system allowed the vents to be kept closed and a high CO2 concentration maintained, except for a few midday hours on the hottest summer days, while in the control compartment the vents were open for at least 11 hours daily. During the experiment, the mean CO2 concentration and vapour pressure deficit (VPD) were 910 ppm and 0.495 kPa in cooling and 565 ppm and 0.706 kPa in control, respectively. The cooling system increased cucumber yield both in quantity and quality. Total cumulative yield over 12 harvesting weeks was 44.4 kg m-2 in cooling and 35.8 kg m-2 in control. Cooling also affected plant structure and dry matter partitioning: the dry weight of fruits, leaves, total above-ground biomass, and harvest index increased, whereas the leaf weight ratio decreased.
机译:尽管该国位于北部,但芬兰的温室生产在夏季遭受高温的影响,可以通过冷却温室来提高植物的产量。为了研究新型直接空气-水热交换器冷却系统对温室气候条件和植物生长的影响,对6月至9月种植的黄瓜(Cucumis sativus L. cv。Cumuli)进行了试验。当总辐射小于600至700 Wm-2时,在冷却室中,冷却系统能够将空气温度保持在最大设定点以下,而无需遮光或通风。在控制室内,仅通过通风控制温度。冷却系统使通风孔保持关闭,并保持较高的CO2浓度,除了在最热的夏季的中午几个小时外,而在控制室内,通风孔每天至少打开11个小时。在实验过程中,冷却时的平均CO2浓度和蒸气压亏缺(VPD)分别为910 ppm和0.495 kPa,对照中分别为565 ppm和0.706 kPa。冷却系统提高了黄瓜的产量和质量。在冷却的12个收获周内,总累积产量为冷却时为44.4 kg m-2,对照为35.8 kg m-2。降温还影响植物结构和干物质分配:果实,叶片的干重,地上总生物量和收获指数增加,而叶重比降低。

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