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Response of muskmelon to drip irrigation water inside a plastic greenhouse

机译:穆斯梅隆滴灌水在塑料温室内滴灌水

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Soil water plays an important role in muskmelon (Cucumis melo L.) production, especially inside greenhouse. The object of this study was to determine the soil water content at which growth and yield production of muskmelon would be optimal based on Time Domain Reflectometry (TDR) inside a plastic greenhouse when using drip irrigation. Four soil water content thresholds (relative to the percentage of field water capacity) for starting the irrigation (45%-I45, 55%-I55, 65%-I65, 75%-I75) were compared in field experiment in 2009. Amount of applied irrigation water for each treatment varied from 120.1 to 178.6 mm. The results showed that muskmelon plant development and fruit production were significantly affected under different irrigation water amounts. Higher soil water content enhanced vegetative growth through increasing the plant height and stem diameter. Variation in soil water content not only had effects on fruit size, but also on fruit yield. The highest fruit yield and irrigation water use efficiency (IWUE) were obtained from the treatment employing the greatest irrigation thresholds and quantity of irrigation (I75). Monitoring of soil water content is recommended as the basis for irrigation. In addition, under controlled environmental conditions, muskmelons can be irrigated using TDR instrument that is a guideline.
机译:土壤水在麝香莫朗(Cucumis Melo L.)生产中发挥着重要作用,特别是在温室内。本研究的目的是确定在使用滴灌灌溉时基于塑料温室内的时域反射测量仪(TDR)的时间域反射测量仪(TDR)的生长和产量产生的土壤含水量。在2009年的现场实验中比较了四种土壤水含量阈值(相对于现场水容量的百分比)(相对于现场水容量的百分比)(45%-I45,55%-I55,65%-i65,75%-75%)。金额每个处理的施加灌溉用水从120.1到178.6 mm变化。结果表明,在不同的灌溉用水量下,麝香瓶植物开发和果实产量显着影响。通过增加植物高度和茎直径,较高的土壤含水量增强了营养生长。土壤含水量的变化不仅对水果尺寸的影响不仅具有效果,而且还对水果产量。从采用最大灌溉阈值和灌溉量(I75)的处理中获得了最高的水果产量和灌溉用水效率(IWUE)。建议监测土壤含水量作为灌溉的基础。此外,在受控的环境条件下,可以使用是指导线的TDR仪器灌溉Muskmelons。

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