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Monetized (socio-)environmental handprint and footprint of an offshore windfarm in the Belgian Continental Shelf: An assessment of local, regional and global impacts. (2024). de Luca, Laura Vittoria ; Clavreul, Julie ; Dewulf, JO ; Staes, Jan ; Mertens, Jan ; Bas, Bilge ; Taelman, Sue Ellen ; Preat, Nils.
In: Applied Energy.
RePEc:eee:appene:v:353:y:2024:i:pa:s0306261923014873.

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  1. Probabilistic power forecasting for wind farm clusters using Moran-Graph network with posterior feedback attention mechanism. (2025). Qu, Zhijian ; Hou, Xinxing ; Huang, Shixun ; Li, DI ; He, Yang ; Meng, Yan.
    In: Energy.
    RePEc:eee:energy:v:328:y:2025:i:c:s0360544225022005.

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  2. Life cycle external cost assessment of an onshore wind farm in South Africa. (2025). Thopil, George Alex ; Ibrahim, Hanif Auwal.
    In: Applied Energy.
    RePEc:eee:appene:v:388:y:2025:i:c:s0306261925004386.

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    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:199:y:2024:i:c:s1364032124002090.

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  4. Monetized (socio-)environmental handprint and footprint of an offshore windfarm in the Belgian Continental Shelf: An assessment of local, regional and global impacts. (2024). de Luca, Laura Vittoria ; Clavreul, Julie ; Dewulf, JO ; Staes, Jan ; Mertens, Jan ; Bas, Bilge ; Taelman, Sue Ellen ; Preat, Nils.
    In: Applied Energy.
    RePEc:eee:appene:v:353:y:2024:i:pa:s0306261923014873.

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  5. The GHG Intensities of Wind Power Plants in China from a Life-Cycle Perspective: The Impacts of Geographical Location, Turbine Technology and Management Level. (2023). Feng, Yashuang ; Zhang, Lixiao.
    In: Sustainability.
    RePEc:gam:jsusta:v:15:y:2023:i:5:p:4449-:d:1085440.

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  6. Examining the Potential of Marine Renewable Energy: A Net Energy Perspective. (2023). Samso, Roger ; Crespin, Julia ; Sole, Jordi ; Garcia-Olivares, Antonio.
    In: Sustainability.
    RePEc:gam:jsusta:v:15:y:2023:i:10:p:8050-:d:1147526.

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  7. Environmental Impact of Electricity Generation Technologies: A Comparison between Conventional, Nuclear, and Renewable Technologies. (2023). de Iuliis, Simona ; Guidi, Giambattista ; Violante, Anna Carmela.
    In: Energies.
    RePEc:gam:jeners:v:16:y:2023:i:23:p:7847-:d:1290963.

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  8. Eco-Efficiency as a Decision Support Tool to Compare Renewable Energy Systems. (2023). Philippot, Maeva Lavigne ; Messagie, Maarten ; Huber, Dominik ; Alonso, Ander Martinez.
    In: Energies.
    RePEc:gam:jeners:v:16:y:2023:i:11:p:4478-:d:1161946.

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  9. Environmental life cycle assessment of a novel offshore wind energy design project: A United States based case study. (2023). Moussavi, S ; Barutha, P ; Dvorak, B.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:185:y:2023:i:c:s1364032123005002.

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  10. A holistic tool to assess the cost and environmental performance of floating offshore wind farms. (2023). Ferreira, Victor J ; Dominguez-Garcia, Jose Luis ; Rapha, Jose I ; Benveniste, Gabriela ; Corchero, Cristina.
    In: Renewable Energy.
    RePEc:eee:renene:v:216:y:2023:i:c:s096014812300993x.

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  11. Opportunities and economic assessment for a third-party delivering electricity, heat and cold to residential buildings. (2023). Gronier, Timothe ; Serra, Luis M ; Franquet, Erwin ; Pinto, Edwin S.
    In: Energy.
    RePEc:eee:energy:v:272:y:2023:i:c:s0360544223004139.

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  12. Energy, power, and greenhouse gas emissions for future transition scenarios. (2023). Battisti, L.
    In: Energy Policy.
    RePEc:eee:enepol:v:179:y:2023:i:c:s0301421523002112.

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  13. The power of wind: The global wind energy industrys successes and failures. (2023). Park, Susan ; Summerfield-Ryan, Oliver.
    In: Ecological Economics.
    RePEc:eee:ecolec:v:210:y:2023:i:c:s0921800923001040.

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  14. Variability in greenhouse gas footprints of the global wind farm fleet. (2023). , Mark ; Dammeier, Louise Christine.
    In: Journal of Industrial Ecology.
    RePEc:bla:inecol:v:27:y:2023:i:1:p:272-282.

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  15. Human Rights and Large-Scale Carbon Dioxide Removal: Potential Limits to BECCS and DACCS Deployment. (2022). Gunther, Philipp ; Ekardt, Felix.
    In: EconStor Open Access Articles and Book Chapters.
    RePEc:zbw:espost:266560.

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  16. Mapping of the Greenhouse Gas Emission Potential for the Offshore Wind Power Sector in Guangdong, China. (2022). Huang, Zetao ; Chen, Yushu ; Yu, Youkai ; Kong, Xuhui ; Tan, Tao.
    In: Sustainability.
    RePEc:gam:jsusta:v:14:y:2022:i:23:p:15533-:d:980686.

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  17. Human Rights and Large-Scale Carbon Dioxide Removal: Potential Limits to BECCS and DACCS Deployment. (2022). Gunther, Philipp ; Ekardt, Felix.
    In: Land.
    RePEc:gam:jlands:v:11:y:2022:i:12:p:2153-:d:987894.

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  18. Development of a stochastic multistage lifecycle programming model for electric power system planning – A case study for the Province of Saskatchewan, Canada. (2022). Zhang, Xiaoyue ; Liu, Lirong ; Huang, Guohe.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:158:y:2022:i:c:s136403212101306x.

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  19. Impacts generated by the materials used in offshore wind technology on Human Health, Natural Environment and Resources. (2022). Chaparro, Tatiana R ; Cabello, Juan Jose ; Rueda-Bayona, Juan Gabriel.
    In: Energy.
    RePEc:eee:energy:v:261:y:2022:i:pa:s0360544222021120.

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  20. A multi-objective maintenance strategy optimization framework for offshore wind farms considering uncertainty. (2022). Jiang, Xiaoli ; Negenborn, Rudy R ; Li, Mingxin ; Carroll, James.
    In: Applied Energy.
    RePEc:eee:appene:v:321:y:2022:i:c:s0306261922006419.

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  21. A life cycle assessment comparison of materials for a tidal stream turbine blade. (2022). , Stuart ; Thies, Philipp R.
    In: Applied Energy.
    RePEc:eee:appene:v:309:y:2022:i:c:s0306261921015993.

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  22. Life cycle assessment of floating offshore wind farms: An evaluation of operation and maintenance. (2022). Thies, Philipp R ; Johanning, Lars ; Jeffrey, Henry ; Rinaldi, Giovanni ; Garcia-Teruel, Anna.
    In: Applied Energy.
    RePEc:eee:appene:v:307:y:2022:i:c:s0306261921013520.

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  23. The Future Is Colorful—An Analysis of the CO 2 Bow Wave and Why Green Hydrogen Cannot Do It Alone. (2021). Hwang, Youngseok ; Schluter, Stephan ; von Dollen, Andreas.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:18:p:5720-:d:633180.

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  24. Life Cycle Assessment of a Barge-Type Floating Wind Turbine and Comparison with Other Types of Wind Turbines. (2021). Yildiz, Nurullah ; Hemida, Hassan ; Baniotopoulos, Charalampos.
    In: Energies.
    RePEc:gam:jeners:v:14:y:2021:i:18:p:5656-:d:631691.

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  25. Comprehensive comparison of multiple renewable power generation methods: A combination analysis of life cycle assessment and ecological footprint. (2021). Zhu, Sulong ; An, Nan ; You, Huan ; Na, Hongming ; Gao, Chengkang.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:147:y:2021:i:c:s1364032121005426.

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  26. Life cycle assessment and life cycle cost analysis of a 40 MW wind farm with consideration of the infrastructure. (2021). Kang, Peng ; Xie, Minghui ; Duan, Huabo ; Bai, Feng ; Wen, Bojie ; Vuppaladadiyam, Arun K ; Ma, YI ; Zhong, Weiqiong ; Gao, Tianming ; Li, Qiangfeng.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:138:y:2021:i:c:s1364032120307851.

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  27. A lifecycle comparison of natural resource use and climate impact of biofuel and electric cars. (2021). Sathre, Roger ; Gustavsson, Leif.
    In: Energy.
    RePEc:eee:energy:v:237:y:2021:i:c:s0360544221017941.

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  28. Efficient spatial distribution of wind power plants given environmental externalities due to turbines and grids. (2021). Hagem, Cathrine ; Grimsrud, Kristine ; Lindhjem, Henrik.
    In: Energy Economics.
    RePEc:eee:eneeco:v:102:y:2021:i:c:s014098832100373x.

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  29. The role of current and emerging technologies in meeting Japan’s mid- to long-term carbon reduction goals. (2021). Huff, Kathryn D ; Stubbins, James ; Chaube, Anshuman ; Chapman, Andrew ; Minami, Akari.
    In: Applied Energy.
    RePEc:eee:appene:v:304:y:2021:i:c:s0306261921010308.

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  30. Efficient spatial allocation of wind power plants given environmental externalities due to turbines and grids. (2020). Hagem, Cathrine ; Grimsrud, Kristine ; Lindhjem, Henrik.
    In: Discussion Papers.
    RePEc:ssb:dispap:938.

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  31. Sustainable Wind Power Plant Modernization. (2020). Kruszelnicka, Weronika ; Kasner, Robert ; Badowska-Witos, Patrycja ; Flizikowski, Jozef ; Tomporowski, Andrzej.
    In: Energies.
    RePEc:gam:jeners:v:13:y:2020:i:6:p:1461-:d:334861.

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  32. Life Cycle Assessment of Tall Onshore Hybrid Steel Wind Turbine Towers. (2020). Gkantou, Michaela ; Baniotopoulos, Charalampos ; Rebelo, Carlos.
    In: Energies.
    RePEc:gam:jeners:v:13:y:2020:i:15:p:3950-:d:393234.

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  33. Maritime Transport in a Life Cycle Perspective: How Fuels, Vessel Types, and Operational Profiles Influence Energy Demand and Greenhouse Gas Emissions. (2020). Founti, Maria ; Seithe, Grusche J ; Giannopoulos, Dimitrios ; Georgopoulou, Chariklia A ; Bonou, Alexandra .
    In: Energies.
    RePEc:gam:jeners:v:13:y:2020:i:11:p:2739-:d:364877.

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  34. Research on carbon emission reduction benefit of wind power project based on life cycle assessment theory. (2020). Li, Sisi ; Wu, Fan.
    In: Renewable Energy.
    RePEc:eee:renene:v:155:y:2020:i:c:p:456-468.

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  35. Sustainable energy system analysis modeling environment: Analyzing life cycle emissions of the energy transition. (2020). Wu, Tony Wenzhao ; Torkamani, Sarah ; Miller, Ian ; O'Sullivan, Francis ; Gener, Emre.
    In: Applied Energy.
    RePEc:eee:appene:v:277:y:2020:i:c:s030626192031062x.

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  36. Probabilistic multicriteria environmental assessment of power plants: A global approach. (2020). de la Cruz, Maria Pilar ; Coira, Manuel Lara ; Cartelle, Juan Jose ; Soares, Isabel ; del Cao, Alfredo.
    In: Applied Energy.
    RePEc:eee:appene:v:260:y:2020:i:c:s0306261919320318.

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  37. Selection of the Most Sustainable Renewable Energy System for Bozcaada Island: Wind vs. Photovoltaic. (2019). Ouz, Elif ; Enturk, Aye Eylul.
    In: Sustainability.
    RePEc:gam:jsusta:v:11:y:2019:i:15:p:4098-:d:252749.

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  38. Evaluating the Environmental Impacts and Energy Performance of a Wind Farm System Utilizing the Life-Cycle Assessment Method: A Practical Case Study. (2019). Mustafa, Ramadan J ; Al-Dhaifallah, Mujahed ; Gomaa, Mohamed R ; Rezk, Hegazy.
    In: Energies.
    RePEc:gam:jeners:v:12:y:2019:i:17:p:3263-:d:260644.

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  39. Life cycle environmental impacts of wind energy technologies: A review of simplified models and harmonization of the results. (2019). Lombardi, Lidia ; Mendecka, Barbara.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:111:y:2019:i:c:p:462-480.

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  40. Past, present and future environmental footprint of the Danish wind turbine fleet with LCA_WIND_DK, an online interactive platform. (2019). Sacchi, Romain ; Besseau, Romain ; Perez-Lopez, Paula ; Blanc, Isabelle.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:108:y:2019:i:c:p:274-288.

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  41. Life Cycle Analysis with Multi-Criteria Decision Making: A review of approaches for the sustainability evaluation of renewable energy technologies. (2019). Campos-Guzman, Veronica ; Garcia-Cascales, Socorro M ; Espinosa, Nieves ; Urbina, Antonio.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:104:y:2019:i:c:p:343-366.

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  42. A comparative life-cycle assessment of hydro-, nuclear and wind power: A China study. (2019). Yi, Rita ; Garvlehn, Mcsimon P ; Wang, Like ; Zuo, Jian ; Du, Huibin ; Bi, Fenfen ; Zhou, Zhihua.
    In: Applied Energy.
    RePEc:eee:appene:v:249:y:2019:i:c:p:37-45.

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  43. Life cycle cost-benefit analysis of offshore wind energy under the climatic conditions in Southeast Asia – Setting the bottom-line for deployment. (2019). Liu, Yang ; Nian, Victor ; Zhong, Sheng.
    In: Applied Energy.
    RePEc:eee:appene:v:233-234:y:2019:i::p:1003-1014.

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  44. Life Cycle Environmental Impact of Onshore and Offshore Wind Farms in Texas. (2018). Huque, Ziaul ; Vamsi, Venkata Sai ; Kommalapati, Raghava Rao ; Chipindula, Jesuina.
    In: Sustainability.
    RePEc:gam:jsusta:v:10:y:2018:i:6:p:2022-:d:152596.

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  45. Numerical simulation on dynamic response of flexible multi-body tower blade coupling in large wind turbine. (2018). Xue, Zhanpu ; Wang, Yuekun ; Cheng, Youliang ; Jiang, Tuo.
    In: Energy.
    RePEc:eee:energy:v:152:y:2018:i:c:p:601-612.

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  46. The energy-mineral-society nexus – A social LCA model. (2018). Venghaus, S ; Zapp, P ; Marx, J ; Hake, J-Fr ; Schlor, H ; Schreiber, A.
    In: Applied Energy.
    RePEc:eee:appene:v:228:y:2018:i:c:p:999-1008.

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  47. A survey of artificial neural network in wind energy systems. (2018). Pinar, Jesus Maria ; Garcia, Fausto Pedro ; Ruiz-Hernandez, Diego ; Marugan, Alberto Pliego.
    In: Applied Energy.
    RePEc:eee:appene:v:228:y:2018:i:c:p:1822-1836.

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  48. On maximizing profit of wind-battery supported power station based on wind power and energy price forecasting. (2018). Agelidis, Vassilios G ; Aguilera, Ricardo P ; Khalid, Muhammad ; Savkin, Andrey V.
    In: Applied Energy.
    RePEc:eee:appene:v:211:y:2018:i:c:p:764-773.

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  49. Feasibility study of offshore wind turbines with hybrid monopile foundation based on centrifuge modeling. (2018). Yang, XU ; Wang, Xuefei ; Zeng, Xiangwu ; Li, Jiale.
    In: Applied Energy.
    RePEc:eee:appene:v:209:y:2018:i:c:p:127-139.

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  50. Life cycle energy and carbon footprint of offshore wind energy. Comparison with onshore counterpart. (2017). Kaldellis, J K ; Apostolou, D.
    In: Renewable Energy.
    RePEc:eee:renene:v:108:y:2017:i:c:p:72-84.

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  51. Effects of aerodynamic damping on the tower load of offshore horizontal axis wind turbines. (2017). Chen, Yan ; Liu, Xiong ; Lu, Cheng ; Godbole, Ajit.
    In: Applied Energy.
    RePEc:eee:appene:v:204:y:2017:i:c:p:1101-1114.

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  52. Wind Turbines’ End-of-Life: Quantification and Characterisation of Future Waste Materials on a National Level. (2016). Eriksson, Ola ; Andersen, Niklas ; Wallhagen, Marita ; Hillman, Karl.
    In: Energies.
    RePEc:gam:jeners:v:9:y:2016:i:12:p:999-:d:83841.

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