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Analysis of Microclimate and Cucumber Fruit Yield in a screenhouse and an evaporatively cooled Greenhouse in a Semi-Arid Location

机译:在半干旱地点筛选中微锁和黄瓜果实产量分析,蒸发凉爽的温室

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The microclimate and cucumber crop response in a screenhouse and in an evaporatively cooled greenhouse were studied in Oman during winter/spring and spring/summer cultivation periods. Measurements were carried out in two similarly shaped structures: (1) a greenhouse equipped with a pad-and-fan system for evaporative cooling of the greenhouse environment and (2) a screenhouse with no cooling system. Analysis of the spring/summer period climate data showed that the evaporative cooling in the greenhousereduced the mean air temperature by about 4.5°C compared to outside and maintained the leaf temperature close to the greenhouse air temperature. The 24 h mean leaf and air temperatures in the greenhouse reached 25.8°C ±1.3°C and 25.9°C +0.8°C, respectively. On the other hand, the 24 h mean leaf and air temperatures in the screenhouse were higher by 1.0°C and 1.3°C, respectively, compared to outside. The 24 h mean leaf and air temperatures in the screenhouse reached 32.8°C ±1.2°C and 31.8°C±1.5°C, respectively. Furthermore, the evaporative cooling in the greenhouse maintained the 24 h mean air vapor pressure deficit (VPD) values at levels lower than 1.1 kPa, while the 24 h mean air VPD in the screenhouse reached values up to 4.5 kPa. These differences resulted in a 50% decrease in crop fruit yield during the spring/summer period. The radiation and water use efficiency (WUE) values observed in the two structures were similar during the winter/spring period but were higher in the greenhouse during the spring/summer period. However, for the greenhouse, when the water evaporated in the wet pad was also considered, the overall WUE was at the same level in both structures during summer. Furthermore, the evaporative cooling applied in the greenhouse enhanced the mean values of fruit quality characteristics measured during the spring/summer, such as fruit dry matter content (5.6%), fruit firmness (5.0 kg cm'2), and chroma (18.6), compared to that of the screenhouse (5.0%, 4.9 kg cm'2 and 16.3, respectively), but did not significantly affect other fruit quality characteristics, such as mean fruit weight (128 g for greenhouse and 123 g for screenhouse), total soluble solids content (3.9 °Brix for both structures), andjuice pH (5.7 for greenhouse and 5.6 for screenhouse). Overall, it can be concluded that under the weather conditions of Oman, although greenhouses are still needed during spring/summer, screenhouses can be used during winter withoutjeopardizing crop production quantity and quality.
机译:在冬季/春季和春季/夏季栽培期间,在阿曼研究了屏幕馆和蒸发冷却温室中的微气候和黄瓜作物反应。测量在两个类似形状的结构中进行:(1)一个配备有垫和风扇系统的温室,用于蒸发温室环境和(2)没有冷却系统的屏幕空间。春季/夏季气候数据的分析表明,与外部相比,将绿色的平均空气温度的蒸发冷却约4.5℃,并将叶温靠近温室气温。温室的24小时平均叶和空气温度分别达到25.8°C±1.3°C和25.9°C + 0.8°C。另一方面,与外部相比,屏幕容器中的24小时平均叶和空气温度分别更高1.0°C和1.3°C。屏幕中的24小时平均叶和空气温度分别达到32.8°C±1.2°C和31.8°C±1.5°C。此外,温室中的蒸发冷却维持在低于1.1kPa的水平的24小时平均空气蒸汽压力缺损(VPD)值,而24小时平均筛选中的空气VPD达到4.5kPa的值。这些差异导致春季/夏季期间作物果产量的50%降低。在两种结构中观察到的辐射和水使用效率(WUE)值在冬季/春季期间相似,但在春季/夏季期间温室间较高。然而,对于温室,当也考虑在湿垫中蒸发的水时,夏季,整个WUE在两个结构中的相同水平。此外,温室中施加的蒸发冷却增强了春季/夏季测量的果实质量特征的平均值,例如水果干物质含量(5.6%),果实强度(5.0千克CM'2)和色度(18.6)相比之下(分别为5.0%,4.9千克CM'2和16.3),但没有显着影响其他果实质量特征,如平均果子重量(温室为128克,筛选123克),总计可溶的固体含量(结构3.9°Brix),Andjuice pH(温室为5.7,筛选筛选)。总体而言,可以得出结论,在阿曼的天气条件下,虽然在春季/夏季仍需要温室,但屏蔽可以在冬季使用,而不会过度化作物生产数量和质量。

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