Assessment of the potential of floating solar photovoltaic panels in bodies of water in mainland Spain

被引:59
|
作者
Lopez, M. [1 ,2 ]
Soto, F. [1 ,2 ]
Hernandez, Z. A. [2 ,3 ]
机构
[1] Univ Oviedo, Escuela Politecn Mieres, DyMAST Res Grp, C Gonzalo Gutierrez Quiros S-N, Mieres 33600, Asturias, Spain
[2] Univ Oviedo, Escuela Politecn Mieres, Dept Construct & Mfg Engn, C Gonzalo Gutierrez Quiros S-N, Mieres 33600, Asturias, Spain
[3] Univ Oviedo, Escuela Politecn Mieres, GICONSIME Res Grp, C Gonzalo Gutierrez Quiros S-N, Mieres 33600, Asturias, Spain
关键词
Renewable energy; Solar energy; Floatovoltaics; Floating structures; LCOE; SATELLITE-BASED RETRIEVAL; SURFACE IRRADIANCE; PERFORMANCE; COVER; GENERATION; DATABASE;
D O I
10.1016/j.jclepro.2022.130752
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This article presents the potential of floating photovoltaic solar energy in Spain, a country with a high solar energy resource and a large water surface area for its deployment, for the first time. Geodata for natural, arti-ficial, and highly modified bodies of freshwater, along with environmental geospatial datasets, were used to calculate electricity generation, taking into account the positive water-cooling effect. The results revealed that Spain could meet about 31% of its electricity demand by covering only 10% of the available water surface area. Deployment of the country's full floating photovoltaic potential could reduce non-renewable electricity gener-ation by 81% and greenhouse gas emissions by 6%, thereby helping to meet the European Union 2030 target. Spanish regions could benefit from this renewable energy, not only by reducing their dependence on non-renewable resources, but also by balancing their electricity generation and demand. The potential of this renewable energy technology is higher in southern regions and particularly in Extremadura, where the electricity generation potential is three times the electricity demand. A detailed analysis of the floating photovoltaic po-tential in three dam reservoirs, the Borboll acute accent on, La Pedrera and Guadalcacin, is also presented for four coverage scenarios. The results highlight the importance of including water depth restrictions on floating photovoltaic module operation and variations in reservoir water level in future assessments, rather than simply applying a fixed percentage of coverage.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Analyzing the impact of urban morphology on solar potential for photovoltaic panels: A comparative study across various European climates
    Merollari, Jacela
    Dervishi, Sokol
    SUSTAINABLE CITIES AND SOCIETY, 2024, 115
  • [22] Evaluating the Potential of Using Floating Solar Photovoltaic on 12 Reservoirs of Electricity Generation Authority of Thailand Hydropower Plants
    Sapthanakorn, Promsak
    Salakij, Saran
    2021 INTERNATIONAL CONFERENCE ON SMART CITY AND GREEN ENERGY (ICSCGE 2021), 2021, : 41 - 45
  • [23] Potential of using floating solar photovoltaic and wind farms for sustainable energy generation in an existing hydropower station in Nigeria
    Ogunjo, Samuel
    Olusola, Adeyemi
    Olusegun, Christiana
    CLEAN TECHNOLOGIES AND ENVIRONMENTAL POLICY, 2023, 25 (06) : 1921 - 1934
  • [24] Water Management Adaptation to Climate Change in Mediterranean Semiarid Regions by Desalination and Photovoltaic Solar Energy, Spain
    Martinez, Gabriel Gomez
    Martin, Miguel Angel Perez
    WATER, 2023, 15 (18)
  • [25] Save water and energy: A techno-economic analysis of a floating solar photovoltaic system to power a water integration project in the Brazilian semiarid
    Alves da Costa, Luana Carolina
    Pimentel da Silva, Gardenio Diogo
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2021, 45 (12) : 17924 - 17941
  • [26] Rooftop solar photovoltaic potential in cities: how scalable are assessment approaches?
    Castellanos, Sergio
    Sunter, Deborah A.
    Kammen, Daniel M.
    ENVIRONMENTAL RESEARCH LETTERS, 2017, 12 (12):
  • [27] Potential of Floating Photovoltaic Technology and Their Effects on Energy Output, Water Quality and Supply in Jordan
    Al-Widyan, Mohamad
    Khasawneh, Mohammad
    Abu-Dalo, Muna
    ENERGIES, 2021, 14 (24)
  • [28] Solar water heating system and photovoltaic floating cover to reduce evaporation: Experimental results and modeling
    Taboada, M. E.
    Caceres, L.
    Graber, T. A.
    Galleguillos, H. R.
    Cabeza, L. F.
    Rojas, R.
    RENEWABLE ENERGY, 2017, 105 : 601 - 615
  • [29] Geospatial assessment of rooftop solar photovoltaic potential using multi-source remote sensing data
    Jiang, Hou
    Yao, Ling
    Lu, Ning
    Qin, Jun
    Liu, Tang
    Liu, Yujun
    Zhou, Chenghu
    ENERGY AND AI, 2022, 10
  • [30] Combining Floating Solar Photovoltaic Power Plants and Hydropower Reservoirs: A Virtual Battery of Great Global Potential
    Farfan, Javier
    Breyer, Christian
    12TH INTERNATIONAL RENEWABLE ENERGY STORAGE CONFERENCE, IRES 2018, 2018, 155 : 403 - 411