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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Temperature integration and DIF in cut chrysanthemum
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Temperature integration and DIF in cut chrysanthemum

机译:切菊的温度积分和DIF

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摘要

To reduce energy consumption in greenhouses, temperature integration can be used. However, the temperature integration principle considers only average temperatures and does not comply with the DIF concept (difference between mean day temperature and mean night temperature). With DIF, stem elongation, one of the major quality aspects of many crops, can be controlled. Short compact plants can be achieved by a negative DIF (average night temperature > average day temperature). In spring, summer and autumn temperature integration usually results in positive DIF and therefore longer stems. The aim of this study was to investigate whether temperature integration and DIF could be applied simultaneously. Greenhouse temperature fluctuates with temperatureintegration. During spring or autumn it is difficult to obtain short compact plants by a negative DIF with regular temperature integration. In this research, temperature integration was therefore modified by applying two independent integration regimes,one for daytime and one for nighttime while a zero DIF was set. Simulations and experiments with standard temperature control, regular and modified temperature integration showed that temperature integration and DIF could be applied simultaneously, while energy consumption and stem elongation were reduced.
机译:为了减少温室中的能量消耗,可以使用温度积分。但是,温度积分原理仅考虑平均温度,不符合DIF概念(平均白天温度和平均夜晚温度之间的差异)。使用DIF,可以控制茎伸长率,这是许多农作物的主要品质之一。短的紧凑型植株可以通过DIF负值实现(夜间平均温度>白天平均温度)。在春季,夏季和秋季,温度积分通常会导致DIF正值,因此茎更长。这项研究的目的是调查温度积分和DIF是否可以同时应用。温室温度随温度的升高而波动。在春季或秋季,很难通过具有常规温度积分的负DIF获得短密实的植物。因此,在这项研究中,通过应用两个独立的积分机制来修改温度积分,一个用于白天,一个用于夜间,而DIF设置为零。在标准温度控制,常规和修正温度积分下进行的仿真和实验表明,温度积分和DIF可以同时应用,同时降低了能耗和茎伸长。

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