A hybrid CSP-CPV system for improving the dispatchability of solar power plants

被引:59
作者
Cocco, Daniele [1 ]
Migliari, Luca [1 ]
Petrollese, Mario [1 ]
机构
[1] Univ Cagliari, Dept Mech Chem & Mat Engn, Via Marengo 2, I-09123 Cagliari, Italy
关键词
Solar energy; Concentrating solar power; Hybrid renewable energy system; Energy storage; Renewable energy; Concentrating photovoltaic; ENERGY-STORAGE-SYSTEMS; DISTRIBUTED GENERATION; CELL TEMPERATURE; HCPV MODULE; WIND; OPTIMIZATION;
D O I
10.1016/j.enconman.2016.02.015
中图分类号
O414.1 [热力学];
学科分类号
摘要
The paper aims to demonstrate the improvement of power dispatchability that can be achieved with a suitable integration of Concentrating Solar Power (CSP) and Concentrating Photovoltaic (CPV) plants to mitigate the effects of the variability and intermittency of solar energy. In particular, the CSP-CPV plant analyzed here refers to the design data of the Ottana Solar Facility, which is currently under construction in the industrial district of Ottana (Sardinia, Italy). Since it is very difficult to know the power curves that are going to be required during the operation phases of the hybrid CSP-CPV plant, the present study has been carried out by assuming a reference daily power output curve, which is simply represented by a constant power output. Moreover, two different energy management strategies, fully integrated (F-INT) and partially integrated (P-INT), are analyzed and compared. The results of this study show the advantages of using an integrated management strategy to satisfy a constant power output curve. Optimization of the CSP and CPV power share leads to an effective use of the dispatch capabilities of the CSP plant owing to the TES section, while the CPV plant is fully exploited, especially during the hours of high solar radiation. Comparison of the results achieved with the F-INT and P-INT control strategies demonstrates that the F-INT one leads to better performance both in terms of annual energy production and hours of potential time duration. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:312 / 323
页数:12
相关论文
共 31 条
[1]   Relation between the cell temperature of a HCPV module and atmospheric parameters [J].
Almonacid, F. ;
Perez-Higueras, P. J. ;
Fernandez, Eduardo F. ;
Rodrigo, P. .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2012, 105 :322-327
[2]  
[Anonymous], 2010, MET VERS 6 0
[3]  
[Anonymous], 2023, World Energy Outlook, DOI [DOI 10.1787/20725302, 10.1787/20725302]
[4]   Feasibility study and energy conversion analysis of stand-alone hybrid renewable energy system [J].
Baghdadi, Fazia ;
Mohammedi, Kamal ;
Diaf, Said ;
Behar, Omar .
ENERGY CONVERSION AND MANAGEMENT, 2015, 105 :471-479
[5]   Hybrid renewable energy systems for power generation in stand-alone applications: A review [J].
Bajpai, Prabodh ;
Dash, Vaishalee .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2012, 16 (05) :2926-2939
[6]   Key performance indicators in thermal energy storage: Survey and assessment [J].
Cabeza, Luisa F. ;
Galindo, Esther ;
Prieto, Cristina ;
Barreneche, Camila ;
Fernandez, A. Ines .
RENEWABLE ENERGY, 2015, 83 :820-827
[7]   A pilot power plant based on concentrating solar and energy storage technologies for improving electricity dispatch [J].
Camerada, Marco ;
Cau, Giorgio ;
Cocco, Daniele ;
Damiano, Alfonso ;
Demontis, Valeria ;
Melis, Tiziana ;
Musio, Maura .
69TH CONFERENCE OF THE ITALIAN THERMAL ENGINEERING ASSOCIATION, ATI 2014, 2015, 81 :165-172
[8]   Optimisation and techno-economic analysis of autonomous photovoltaic-wind hybrid energy systems in comparison to single photovoltaic and wind systems [J].
Celik, AN .
ENERGY CONVERSION AND MANAGEMENT, 2002, 43 (18) :2453-2468
[9]  
Cocco D, 2015, P ECOS 2015 28 INT C
[10]   Performance comparison of two-tank direct and thermocline thermal energy storage systems for 1 MWe class concentrating solar power plants [J].
Cocco, Daniele ;
Serra, Fabio .
ENERGY, 2015, 81 :526-536