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Evaluation of Shallow Subsurface Drip Irrigation for the Production of Acorn Squash

机译:浅层地下滴灌生产橡子南瓜的评价

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摘要

Subsurface drip irrigation (SDI) has been increasingly used for the production of numerous agronomic crops and a limited number of vegetable crops. To determine the impact of SDI compared with surface drip irrigation (SUR), a study was conducted in 2011 and 2012 with 'Table Queen' acorn squash (Cucurbita pepo var. turbinata) with irrigation initiated at 75% and 50% plant available water (PAW). The study was arranged as a factorial randomized complete block design and plants were grown with two irrigation types (SUR or SDI) and two tensiometer-controlled irrigation regimes. Results from 2011 suggested that SDI used less water compared with SUR at each irrigation set point. However, in 2012, significantly more water was used in all treatments due to warmer temperatures and less rainfall. In 2012, SDI used more water than SUR treatments at the same irrigation set point. In 2012, yield was affected by irrigation treatment. Plants grown using SUR irrigating at 75% PAW had greater numbers of fruit compared with other treatments. Furthermore, the highest yielding treatment had more than twice the number of irrigation events than the other treatments though the average lengths of irrigation events were shorter. Although overall yields were greater in 2012, irrigation water use efficiency (iWUE) was lower than in 2011 due to increased water use. These results suggest that while SDI may have some advantages over traditional SUR, environmental factors during growth can significantly impact the efficiency and productivity of each system.
机译:地下滴灌(SDI)已被越来越多地用于生产多种农作物和少量蔬菜作物。为了确定SDI与地表滴灌(SUR)相比的影响,于2011年和2012年对“ Table Queen”橡子南瓜(Cucurbita pepo var。turbinata)进行了一项研究,其中灌溉用水分别为75%和50%植物​​可用水(爪子)。研究安排为因子随机完整区组设计,并使用两种灌溉类型(SUR或SDI)和两种张力计控制的灌溉方式来种植植物。 2011年的结果表明,在每个灌溉设定点,SDI的用水量均少于SUR。但是,由于温度升高和降雨减少,2012年所有处理中使用的水明显增加。 2012年,在相同的灌溉设定点,SDI的用水量比SUR处理的要多。 2012年,产量受到灌溉处理的影响。与其他处理相比,使用SUR灌溉以75%PAW种植的植物果实数量更多。此外,尽管平均灌溉时间较短,但最高产量的灌溉事件的次数是其他处理次数的两倍。尽管2012年的总产量较高,但由于用水量增加,灌溉用水效率(iWUE)低于2011年。这些结果表明,尽管SDI可能比传统的SUR具有某些优势,但增长过程中的环境因素会显着影响每个系统的效率和生产率。

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