中东和北非地区首都城市最精确的水平向倾斜天空散射太阳辐射转换模型的确定

Y. Nassar, Samer Alsadi, H. El-khozondar, S. Refaat
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引用次数: 3

摘要

准确的太阳辐射数据对于设计、评估和优化太阳能系统至关重要。气象记录资料是太阳辐照度资料的主要来源。由于不经常记录特定倾斜表面上的太阳辐照,因此使用水平到倾斜太阳辐照转换模型(HTTM)将太阳辐照的可测量分量(全球水平、天空漫反射和地面反射)转换为高精度的全球倾斜太阳辐照。太阳转位模型的重要意义在于确定太阳能集热器的最佳倾角,这是使太阳能集热器上的太阳辐射最大化的重要设计参数之一。本文介绍了在不需要实测数据的情况下,求出最接近中东和北非地区实际模型的一种统计方法。此外,还总结了当地研究人员为中东和北非地区特定地点推荐的最佳倾斜角度和转置模型。该研究表明,除了位置外,转置模型还取决于太阳能集热器的倾角。该研究确定了大多数城市的模型偏差率约为3%,这是一个工程上合理的百分比,这鼓励作者推荐这种方法来确定世界上更广泛地区的更准确的转位模型。另一方面,所有的模型都不能在大倾角,特别是垂直表面上获得可接受的偏差率,这在工程上有很大的应用价值。作者建议研究人员在采用已在低倾斜角验证的转置模型时要注意将其应用于高倾斜角和建筑斜面。研究还表明,在所有考虑的转位模式和所有站点中,由于倾角与最佳角度的偏移,每年全球太阳总辐射的减少不超过1%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the Most Accurate Horizontal to Tilted Sky-Diffuse Solar Irradiation Transposition Model for the Capital Cities in MENA Region
Accurate solar radiation data is essential in designing, evaluating and optimizing solar energy systems. The meteorological recorded data is the mainly source of the solar irradiance data. Since solar irradiance incident on a specific tilted surface is not frequently recorded, the horizontal to tilted solar irradiation transposition models (HTTM) use to convert the measurable components of solar irradiation (global horizontal, sky-diffuse and ground reflected) to global tilted solar irradiation with high accuracy. The importance of the solar transposition model is in determining the optimum tilt angle of solar energy harvesters which is one of the important design parameters for maximizing solar radiation incident on the solar collectors. This paper introduces a statistical procedure to Figure out the transposition model that is closest to the real model in the MENA region without needs for measured data. Also it provided a summary of optimum tilt angles and transposition models that recommended by local researchers for specific locations in MENA region. This study showed that the transposition models depend on the angle of inclination of the solar collector in addition to the location. The study identified models with deviation rates about 3% for most cities, which is an engineering reasonable percentage, and this encourages the authors to recommend this approach to determine more accurate transposition models for wider regions of the world. On the other hand, it showed that all models failed to achieve an acceptable deviation rate for high tilt angles especially vertical surfaces, which have great engineering applications. The authors advise researchers to take care when adopting a transposition model that has been validated at low tilt angles to apply it to high tilt angles and building façaades. The study is also reveal that, the reduction in total annual global solar irradiation is not exceed than 1% due to the offset of tilt angle from the optimum angle for all considered transposition models and for all sites.
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