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首页> 外文期刊>HortScience >Modeling Actual Evapotranspiration of Viburnum odoratissimum during Production from Rooted Cuttings to Market Size Plants in 11.4-L Containers
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Modeling Actual Evapotranspiration of Viburnum odoratissimum during Production from Rooted Cuttings to Market Size Plants in 11.4-L Containers

机译:在11.4升容器中模拟从根屑到市场规模的植物生产过程中香荚兰的实际蒸散量

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Rooted cuttings of Viburnum odoratissimum were grown outdoors to market size in 11.4-L containers. Actual evapotranspiration (ETA) of nine plants was determined daily as was evaporation from three control containers shaded with plastic foliage to mimic plant growth. The first 60 d after transplanting, substrate evaporation accounted for most of ETA. Substrate evaporation was generally constant the first 160 days before declining, but still remained approximate to 160 mL/day through harvest at market size. ETA increased with growth and generally followed variations in reference evapotranspiration (ETo). Mean ETA during most of the production cycle was less than 600 mL/day (11.8 mm based on upper container surface area). With the spring growth flush, mean ETA reached 1.3 L/day as plants achieved market size. Mean cumulative ETA to produce 90% of measured plants to market size was 155 L or 3.1-m depth per plant based on container surface area. Water need indices, similar to crop coefficients, were highly correlated with percent canopy closure (%Closure) using an exponential decay equation. When overlain with previous similar data for Ligustrum japonicum, the correlation for the combined data set had an r(2) = 0.843. This suggests that the %Closure model may provide a method for ETo-based irrigation of woody shrub species based on canopy size and spacing.
机译:在室外11.4L的容器中将根茎荚of的根茎切块种植到市场规模。每天测定9株植物的实际蒸散量(ETA)以及从三个用塑料树荫遮盖的对照容器中的蒸发量来模拟植物的生长。移植后的前60 d,底物蒸发占ETA的大部分。底物蒸发在下降之前的前160天通常是恒定的,但在市场规模下收获时仍保持在约160 mL /天。 ETA随着生长而增加,并且通常跟随参考蒸散量(ETo)的变化。在大多数生产周期中,平均ETA小于600毫升/天(基于上层容器表面积为11.8毫米)。随着春季的增长,随着植物达到市场规模,平均ETA达到1.3升/天。按集装箱表面积计算,生产90%被测植物到市场规模的平均累积ETA为155 L或每棵植物3.1毫米深度。使用指数衰减方程,与作物系数相似的需水指数与冠层关闭百分比(%Closure)高度相关。当用日本女贞的先前相似数据覆盖时,组合数据集的相关性为r(2)= 0.843。这表明%Closure模型可能会提供基于冠层大小和间距的基于ETo的木本灌木物种灌溉的方法。

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