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首页> 外文期刊>Agronomy Journal >Plant Density and Leaf Area Index Effects on the Distribution of Light Transmittance to the Soil Surface in Maize
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Plant Density and Leaf Area Index Effects on the Distribution of Light Transmittance to the Soil Surface in Maize

机译:种植密度和叶面积指数对玉米土壤表面透光率分布的影响

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The solar corridor concept examines approaches to better use light in row crops. To achieve this goal, an understanding of the diel patterns of light transmittance to the soil surface in the interrow zone in row crops is necessary. The objective of this study was to investigate the temporal and spatial distribution of light transmittance to the soil surface at different row positions. Light data and leaf area of maize (Zea mays L.) were collected over a period of 2 yr to quantify the spatial distribution of light transmittance to the soil surface under different plant and canopy densities. Leaf area index (LAI) was varied by using two different plant densities and a range of N applications. Photosynthetically active radiation (PAR) was measured using quantum line sensors at three to seven row positions depending on row spacing (0.78 and 0.36 m). Light transmittance to the soil surface varied by position within the row and time of day. The variation was greatest for low N and low plant density spacing treatments. On cloudy days with more diffuse light the variation in light transmittance between the within and row positions was less. Light extinction coefficients decreased as solar elevation increased toward midday. The wide variation in light transmittance to the soil surface in the interrow zone points out the need to manage plant and management properties such as leaf area, plant density, and row spacing to take best advantage of light in the solar corridor.
机译:太阳走廊概念研究了在大田作物中更好地利用光的方法。为了实现这一目标,必须了解行间作物行间区域土壤表面的透光率的迪尔图案。这项研究的目的是研究不同行位置土壤表面的透光率的时空分布。在2年的时间内收集了玉米(Zea mays L.)的光数据和叶面积,以量化在不同植物和冠层密度下对土壤表面的透光率的空间分布。叶面积指数(LAI)通过使用两种不同的植物密度和一系列氮肥施用量而变化。根据行间距(0.78和0.36 m),使用量子线传感器在三到七个行位置测量了光合有效辐射(PAR)。到土壤表面的透光率根据一天中行和时间的位置而变化。对于低氮和低植物密度间隔处理,变化最大。在阴天,散射光较多,内部和行位置之间的透光率变化较小。随着太阳高度向正午增加,消光系数减小。到行间带的土壤表面的透光率变化很大,这表明需要管理植物和管理特性,例如叶面积,植物密度和行距,以充分利用太阳能走廊中的光。

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