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Plant canopy affects sprinkler irrigation application efficiency of container-grown ornamentals

机译:植物冠层影响容器种植观赏植物的喷灌应用效率

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摘要

Marketable size plants of sweet viburnum (Viburnum odoratissitmum Ker-Gawl.), waxleaf ligustrum (Ligustrum japonicum Thunb.), and azalea (Rhododendron spp. L. 'Southern Charm') grown in 11.4-L containers were irrigated with overhead impact sprinklers at container spacings ranging from 0 to 51 cm apart. Water reaching the substrate surface was quantified and the percentage of that applied calculated as percent capture (% capture). Percent capture is defined as the percentage of water failing above the plant within a projected vertical cylinder of a container that reaches the substrate surface. For all species, % capture increased linearly with the decline in adjacent canopy interaction, which results from canopies extending beyond the diameter of a container. Increases in total leaf area or leaf area outside the cylinder of a container, in conjunction with increasing distance between containers, were significantly (P < 0.05) correlated with increases in % capture for ligustrum and viburnum. Increases in % capture partially compensated for decreases in percentage of production area occupied by viburnum containers as distances between containers increased, but not for the other two species. Under commercial conditions, optimal irrigation efficiency would be achieved when plants are grown at the minimum spacing required for commercial quality. This spacing should not extend beyond the point where canopies become isolated.
机译:在11.4-L容器中种植的市售大小的甜荚莲(Viburnum odoratissitmum Ker-Gawl),蜡叶女贞(Ligustrum japonicum Thunb。)和杜鹃花(Rhododendron spp。L.“ Southern Charm”)的植株用高架冲击式喷头灌溉容器间距介于0到51厘米之间。对到达基材表面的水进行定量,并且所施加的水的百分比计算为捕获百分比(捕获百分比)。捕集百分比定义为在到达底物表面的容器的投影垂直圆柱体内的工厂上方漏水的百分比。对于所有物种,捕获率随相邻冠层相互作用的下降而线性增加,这是由于冠层延伸超过了容器的直径所致。总叶面积或容器圆柱体外部叶面积的增加与容器之间距离的增加显着相关(P <0.05),与女贞子和荚capture的捕获百分比增加相关。随着容器之间距离的增加,捕获百分比的增加部分补偿了荚vi容器所占生产面积百分比的下降,但其他两个物种则没有。在商业条件下,当植物以商业质量所需的最小间距生长时,将达到最佳灌溉效率。该间距不应超出檐篷被隔离的位置。

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