首页> 外文期刊>Boundary-layer Meteorology >The effect of the screen on the mass, momentum, and energy exchange rates of a uniform crop situated in an extensive screenhouse.
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The effect of the screen on the mass, momentum, and energy exchange rates of a uniform crop situated in an extensive screenhouse.

机译:筛网对位于广阔筛网中的均匀作物的质量,动量和能量交换率的影响。

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摘要

The area of crops cultivated in extensive screenhouses is rapidly growing, especially in semi-arid and arid regions. Water vapour, carbon dioxide, and sensible heat released or taken up by crops within such protected environments can substantially alter the immediate micro-environment, which in turn, affects these fluxes. This amplified interaction between plants and their microclimate challenges simple assessments on how partially covering the crop by a screen modifies plant water uptake and photosynthesis. Via a newly proposed higher-order closure model, the effects of a screen on the mean flow field, turbulent stresses, radiative and energy fluxes, as well as scalar sources, sinks, fluxes, and mean scalar concentration within screenhouses are explored. As a starting point, an extensive screenhouse is assumed thereby reducing the sensitivity of the model results to the precise geometric configuration of the screenhouse. The model findings for the screenhouse are presented and referenced against their open field counterpart. The radiation modulation and changes to turbulent transport due to the presence of the screen are investigated. In general, the presence of a screen results in a warmer and more humid environment inside the screenhouse, promoting reductions in both canopy photosynthesis and transpiration. However, the overall effect of the screen is to enhance water-use efficiency thereby resulting in water savings for the same amount of gross primary production.
机译:广泛的筛选房中种植的农作物面积正在迅速增长,特别是在半干旱和干旱地区。在这种受保护的环境中,农作物释放或吸收的水蒸气,二氧化碳和显热可以显着改变当前的微环境,进而影响这些通量。植物及其微气候之间这种放大的相互作用挑战了对简单的评估方法,即如何通过屏幕部分覆盖农作物来改变植物的水分吸收和光合作用。通过新提出的高阶封闭模型,研究了筛网对平均流场,湍流应力,辐射和能量通量以及筛室内标量源,汇,通量和平均标量浓度的影响。作为出发点,假定了一个大型的筛选室,从而降低了模型结果对筛选室的精确几何配置的敏感性。提出了筛选室的模型发现,并参考了它们的开放领域对应物。研究了屏幕的存在导致的辐射调制和湍流传输的变化。通常,屏幕的存在会导致屏幕室内更温暖,更潮湿的环境,从而促进冠层光合作用和蒸腾作用的减少。但是,滤网的总体效果是提高了用水效率,从而在相同的总初级生产量下节省了水。

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