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Can we manage light interception levels above 70% in apple orchards?

机译:我们可以在苹果园管理70%以上的光拦截水平吗?

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For the last 20 years we have recommended that orchards be designed to intercept a minimum of 70% light interception. Replicated field plantings at Geneva have shown that when tree height is about 90% of the between row spacing light interception is about 75%. This has become our standard recommendation in designing new orchards. However, in recent years three developments have led us to question this rule. First the development of the Tall Spindle planting system and the use of mechanical summer pruning has resulted in very narrow canopy profiles (fruiting walls), which have very good light distribution within the canopy. This could allow taller trees relative to the between row spacing with a height to row spacing ratio of 1:1. A second development has been the use of V-shaped canopies, which are very thin and shoot growth in the middle of the V is controlled with plant growth inhibitors. These V-shaped canopies can intercept more than 75% of available light depending on the open gap at the top of the V. This tree shape allows even the lowest part of the canopy to receive adequate light during the middle of the day with good fruit quality in the bottom of the canopy but also imposes the greatest energy load on the tree and hence transpiration compared to vertical tree shapes. A third trend is the use of reflective films to enhance the light exposure level of the lower part of the canopy. This practice with the use of V-shaped canopies could utilize 80-85% of available light energy resulting inhigher yield.
机译:过去20年,我们建议果园设计用于拦截至少70%的光拦截。日内瓦的复制田间种植表明,当树高度约为行间距光拦截的大约90%约为75%。这已成为设计新果园的标准推荐。然而,近年来,三个发展导致我们解决了这条规则。首先,高层主轴种植系统的发展和机械夏季修剪的使用导致非常窄的冠层型材(结果壁),在树冠内具有非常好的光分布。这可能允许较高的树相对于行间距之间的高度与行间距为1:1的行间距。第二种开发一直是使用V形檐篷,其在v植物生长抑制剂的控制中是非常薄的,并且在V的中间拍摄。这些V形檐篷可以根据V的顶部的开放间隙拦截超过75%的可用光。这种树形允许覆盖器的最低部分甚至可以在一天中获得足够的光线,良好的水果冠层底部的质量,但也施加了树上最大的能量负荷,因此与垂直树形状相比,蒸腾。第三个趋势是使用反射膜来增强冠层下部的光曝光水平。使用V形檐篷的这种做法可以利用80-85%的可用光能导致产量。

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