Assessment of Lighting Uniformity as a Factor of Energy Efficiency in Greenhouse Horticulture

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY Engineering Technologies and Systems Pub Date : 2021-09-30 DOI:10.15507/2658-4123.031.202103.470-486
S. Rakutko, E. Rakutko
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引用次数: 1

Abstract

Introduction. Greenhouse lighting systems are an integral part of the system for growing plants in cultivation facilities with an artificial microclimate. The uniformity of light distribution over the growing area is important to increase energy efficiency and improve plant quality, among other requirements. The aim of the work is to consider the mathematical apparatus for describing the distribution of light over the surface and to justify the choice of ways to characterize the degree of lighting uniformity. Materials and Methods. The basic concepts of the subject area such as lighting, lighting body, horizontal lighting curve, luminous intensity curve are considered in terms of theoretical photometry. To assess the energy and ecological friendliness of the greenhouse horticulture, the lighting efficiency factor was used. Various methods for determining the average lighting value are presented. The formulas for the uniformity coefficients are presented. Experimental verification was carried out on a horizontal plane simulating a surface for growing plants. A luminary with a round-symmetric light distribution was used. Results. It has been found that the lighting values calculated by the proposed method at various points of the illuminated surface correspond to the experimentally obtained values. It has been shown that the coefficient taking into account the pattern of lighting distribution over all points of the surface carries a lot of information about the uniformity. A frequency graph for the lighting distribution value has been constructed and its practical applicability has been substantiated. The relationship between the lighting efficiency and uniformity of the generated lighting has been revealed. With reduced suspension height of the luminary, it is possible to increase significantly the lighting efficiency factor, however, the lighting uniformity deteriorates sharply. Discussion and Conclusion. There is proposed a method for assessing the energy efficiency by the lighting efficiency factor, which determines the proportion of the useful lighting falling on the surface in the total lighting generated by light sources. It is suggested that this indicator can characterize the ecological quality of photoculture, since it has been established its relationship with the uniformity of the created lighting, the impact of which on photoculture is described in the literature.
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温室园艺中照明均匀性作为能源效率因素的评价
介绍。温室照明系统是在人工小气候的栽培设施中种植植物的系统的一个组成部分。光照分布在种植区域的均匀性对于提高能源效率和改善植物质量以及其他要求非常重要。这项工作的目的是考虑用于描述表面上的光分布的数学装置,并证明选择表征光照均匀度的方法是正确的。材料与方法。从理论光度学的角度出发,考虑了照明、照明体、水平照明曲线、发光强度曲线等主题领域的基本概念。为了评估温室园艺的能源和生态友好性,采用了照明效率因子。给出了确定平均光照值的各种方法。给出了均匀性系数的计算公式。在模拟植物生长表面的水平面上进行了实验验证。采用圆对称光分布的光源。结果表明,该方法在被照表面各点处计算得到的光照值与实验值基本一致。计算结果表明,考虑表面上所有点的光照分布模式的系数包含了许多关于均匀性的信息。构造了照明分布值的频率图,并验证了其实用性。揭示了照明效率与产生的照明均匀性之间的关系。降低灯具悬架高度,可以显著提高照明效率系数,但照明均匀性急剧下降。讨论与结论。提出了一种用照明效率系数来评估能源效率的方法,该系数决定了落在表面的有用照明在光源产生的总照明中所占的比例。有人认为,这一指标可以表征光培养的生态质量,因为它已经与所创造的照明的均匀性建立了关系,这对光培养的影响在文献中有描述。
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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