Total solar irradiance's effect on the performance of empirical models for estimating global solar radiation: An empirical-based review

被引:43
作者
Almorox, Javier [1 ]
Voyant, Cyril [2 ]
Bailek, Nadjem [3 ]
Kuriqi, Alban [4 ]
Arnaldo, J. A. [5 ]
机构
[1] Univ Politecn Madrid UPM, Avd Puerta Hierro 2, Madrid 28040, Spain
[2] Univ Cors Pasquale Paoli, Lab Sci Environm, UMR CNRS 6134, Georges Peri Ctr, Route Sanguinaires, F-20000 Ajaccio, France
[3] Univ Tamanghasset, Energies & Mat Res Lab, Fac Sci & Technol, Tamanrasset 10034, Algeria
[4] Univ Lisbon, Inst Super Tecn, CERIS, Lisbon, Portugal
[5] Phys, Carretera Humera, Madrid 28224, Spain
关键词
Irradiance; Radiation; Solar constant; Total solar irradiance; SPECTRAL IRRADIANCE; HEATING-SYSTEM; CLIMATE-CHANGE; VARIABILITY; CONSTANT; ENERGY; VALIDATION; PREDICTION; SATELLITE; TRENDS;
D O I
10.1016/j.energy.2021.121486
中图分类号
O414.1 [热力学];
学科分类号
摘要
Many Total Solar Irradiance (TSI) and Solar Constant (SC) values are given and used in the literature, sometimes leading to confusion. The TSI value is relevant and has great importance in engineering and scientific research in energy. In this study, a review has been done to study the TSI and SC concepts. A reevaluation of the TSI and SC is undertaken to consider state of the art. The effect of three different TSI values concerning different locations is studied for estimating global radiation with the Angstrom-Pre-scott (A-P) formulation over Spain. New seasonal A-P coefficient sets are developed for Spain. The good performance for all the 29 stations and seasons and the slight differences observed for the different TSI values employed ensure global solar radiation (GSR) accuracy with the A-P model. The results highlight the local and seasonal A-P coefficient calibration relevance instead of using a single general pair of calibration coefficients. Based on the TSI study, we recommended calculations of solar radiation models to adopt the TSI value equal to 1361 W m(-2). The revised TSI is lower than the previous values proposed. Therefore, it is highly recommended to review the value and concept of TSI. (C) 2021 Published by Elsevier Ltd.
引用
收藏
页数:10
相关论文
共 129 条
[71]   SOLAR CONSTANT - (COMPILATION OF RECENT MEASUREMENTS) [J].
LABS, D ;
NECKEL, H .
SOLAR PHYSICS, 1971, 19 (01) :3-&
[72]   Solar constant values for estimating solar radiation [J].
Li, Huashan ;
Lian, Yongwang ;
Wang, Xianlong ;
Ma, Weibin ;
Zhao, Liang .
ENERGY, 2011, 36 (03) :1785-1789
[73]   WHY IS THE SOLAR CONSTANT NOT A CONSTANT? [J].
Li, K. J. ;
Feng, W. ;
Xu, J. C. ;
Gao, P. X. ;
Yang, L. H. ;
Liang, H. F. ;
Zhan, L. S. .
ASTROPHYSICAL JOURNAL, 2012, 747 (02)
[74]  
Liu B., 1961, ASHRAE, V10, P53
[75]   The IAU 2009 system of astronomical constants: the report of the IAU working group on numerical standards for Fundamental Astronomy [J].
Luzum, Brian ;
Capitaine, Nicole ;
Fienga, Agnes ;
Folkner, William ;
Fukushima, Toshio ;
Hilton, James ;
Hohenkerk, Catherine ;
Krasinsky, George ;
Petit, Gerard ;
Pitjeva, Elena ;
Soffel, Michael ;
Wallace, Patrick .
CELESTIAL MECHANICS & DYNAMICAL ASTRONOMY, 2011, 110 (04) :293-304
[76]   PREDICTION OF DIRECT SOLAR-RADIATION FOR LOW ATMOSPHERIC TURBIDITY [J].
MAJUMDAR, NC ;
MATHUR, BL ;
KAUSHIK, SB .
SOLAR ENERGY, 1972, 13 (04) :383-&
[77]  
Mamajek E. E, 2015, arXiv
[78]   A single method to estimate the daily global solar radiation from monthly data [J].
Manzano, A. ;
Martin, M. L. ;
Valero, F. ;
Armenta, C. .
ATMOSPHERIC RESEARCH, 2015, 166 :70-82
[79]   THE HISTORICAL EVOLUTION OF THE ANGSTROM FORMULA AND ITS MODIFICATIONS - REVIEW AND BIBLIOGRAPHY [J].
MARTINEZLOZANO, JA ;
TENA, F ;
ONRUBIA, JE ;
DELARUBIA, J .
AGRICULTURAL AND FOREST METEOROLOGY, 1984, 33 (2-3) :109-128
[80]   Global solar irradiation in north mexico city and some comparisons with the south [J].
Matsumoto, Yasuhiro ;
Valdes, Mauro ;
Urbano, J. Antonio ;
Kobayashi, Tomonao ;
Lopez, Gabriela ;
Pena, Ramon .
2013 ISES SOLAR WORLD CONGRESS, 2014, 57 :1179-+