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首页> 外文期刊>HortTechnology >Comparing a Smartphone Irrigation Scheduling Application with Water Balance and Soil Moisture-based Irrigation Methods: Part II-Plasticulture-grown Watermelon
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Comparing a Smartphone Irrigation Scheduling Application with Water Balance and Soil Moisture-based Irrigation Methods: Part II-Plasticulture-grown Watermelon

机译:比较智能手机灌溉调度应用与水平衡和土壤水分灌溉方法:第II型 - 血液栽培生长西瓜

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A new smartphone irrigation scheduling application (VegApp) was compared with current irrigation scheduling recommendations and an automated soil moisture sensor (SMS)-based irrigation system in southern Georgia during Spring 2016 and 2017. Plants were grown using plastic mulch and drip irrigation following standard production practices for watermelon (Citrullus lanatus) in Georgia. The VegApp irrigation regime was based on evapotranspiration (ETo) values calculated from real-time data collected from a nearby weather station. Current irrigation scheduling recommendations use a water balance (WB) method. The WB method uses historic averages for determining ETo rates for the season. Water applied, soil water tension at 6-, 10-, and 14-inch depths, yield, and fruit quality were evaluated. In 2016, the SMS-based irrigation plots applied the least water. In 2017, the lowest amount of water was applied to plants grown using the VegApp. Total marketable yields were not significantly affected by irrigation regime. However, 45-count fruit yields were affected by irrigation in 2017. Plants grown using SMS-based irrigation had significantly higher yields of 45-count fruit than those grown using the WB method. Irrigation water use efficiency (IWUE) was affected by irrigation treatment and year. The SMS-irrigated plants had the greatest IWUE, although it was not significantly different from plants grown using the VegApp irrigation program. Internal quality parameters including, firmness, hollow heart, and total soluble solids (TSS) were not significantly affected by irrigation scheduling during the study. The results suggest that overall water applications may be reduced and yields maintained when using VegApp compared with traditional WB methods of irrigation scheduling.
机译:2016年春季和2017年春季,将一款新的智能手机灌溉调度应用程序(VegApp)与当前的灌溉调度建议以及佐治亚州南部基于自动土壤水分传感器(SMS)的灌溉系统进行了比较。按照佐治亚州西瓜(Citrullus lanatus)的标准生产规程,使用塑料薄膜覆盖和滴灌种植作物。VegApp灌溉制度基于从附近气象站收集的实时数据计算的蒸散量(ETo)值。当前的灌溉计划建议使用水平衡(WB)方法。WB方法使用历史平均值来确定本季度的ETo率。对施水量、6、10和14英寸深度的土壤水张力、产量和果实质量进行了评估。2016年,基于SMS的灌溉地块用水量最少。2017年,使用VegApp种植的植物所需水量最低。灌溉制度对市场总产量没有显著影响。然而,2017年,45种水果的产量受到灌溉的影响。使用基于SMS的灌溉方法生长的植株比使用WB方法生长的植株具有显著更高的45个果实产量。灌溉水利用效率(IWUE)受灌溉处理和年份的影响。SMS灌溉的植物具有最大的IWUE,尽管它与使用VegApp灌溉计划种植的植物没有显著差异。内部质量参数,包括硬度、空心度和总可溶性固形物(TSS),在研究期间不受灌溉计划的显著影响。结果表明,与传统的WB灌溉调度方法相比,使用VegApp可以减少总的水用量,并保持产量。

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