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How does wind farm performance decline with age?. (2014). Staffell, Iain ; Green, Richard.
In: Renewable Energy.
RePEc:eee:renene:v:66:y:2014:i:c:p:775-786.

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  2. Anomaly detection of wind turbines based on stationarity analysis of SCADA data. (2024). Staszewski, Wieslaw J ; Barszcz, Tomasz ; Dao, Phong B.
    In: Renewable Energy.
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  3. Techno-economic optimization of standalone photovoltaic-wind turbine-battery energy storage system hybrid energy system considering the degradation of the components. (2024). Bhimaraju, Ambati ; Mahesh, Aeidapu ; Nirbheram, Joshi Sukhdev.
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  4. A framework for developing data-driven correction factors for solar PV systems. (2024). Ahn, Hyeunguk.
    In: Energy.
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  5. Optimal sitting and sizing of hydrogen refilling stations in distribution networks under locational marginal prices. (2024). Horrillo-Quintero, Pablo ; Garcia-Trivio, Pablo ; Tostado-Veliz, Marcos ; Fernandez-Ramirez, Luis M ; Jurado, Francisco.
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  6. Lifecycle battery carbon footprint analysis for battery sustainability with energy digitalization and artificial intelligence. (2024). Zhou, Yuekuan.
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  8. Sustainability Implications of Current Approaches to End-of-Life of Wind Turbine Blades—A Review. (2023). Bank, Lawrence C ; Elberling, Jeffrey ; Nagle, Angela J ; Gentry, Russell T ; McKinley, Jennifer M ; Leahy, Paul G ; Delaney, Emma L.
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  9. Impact Assessment of Dynamic Loading Induced by the Provision of Frequency Containment Reserve on the Main Bearing Lifetime of a Wind Turbine. (2023). Vandevelde, Lieven ; De Waele, Wim ; Boruah, Dibakor ; Singh, Narender.
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  10. Improving the Feed-in Tariff Policy for Renewable Energy Promotion in Ukraine’s Households. (2023). Pysmenna, Uliana ; Bashynska, Iryna ; Prokopenko, Olha ; Sotnyk, Iryna ; Kurbatova, Tetiana.
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  11. Potential for wind farming in West Africa from an analysis of daily peak wind speeds and a review of low-level jet dynamics. (2023). Mietton, Michel ; Gunnell, Yanni ; Fujiki, Kenji ; Toure, Amadou Abdourhamane.
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  12. Self-reconfiguration simulations of turbines to reduce uneven farm degradation. (2023). Salonitis, Konstantinos ; Manolesos, Marinos ; Roy, Rajkumar ; Mahmood, Minhal ; Brooks, Sam.
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  13. Condition-based maintenance optimization for multi-component systems considering prognostic information and degraded working efficiency. (2023). Guo, Ziwei ; Zuo, Mingjian ; Wang, Yifei ; Tian, Zhigang ; He, Rui.
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  15. Investment in wind-based hydrogen production under economic and physical uncertainties. (2023). Chamorro, Jose M ; Abadie, Luis M.
    In: Applied Energy.
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  16. Circular Environmental Impact of Recycled Building Materials and Residential Renewable Energy. (2022). Assimakopoulos, Margarita N ; Nikolaou, Dimitrios A ; Papadaki, Dimitra.
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  17. Techno-Economic and Environmental Impact Analysis of Large-Scale Wind Farms Integration in Weak Transmission Grid from Mid-Career Repowering Perspective. (2022). Alghassab, Mohammed ; Abbas, Syed Ali ; Butt, Rohan Zafar ; Alruwaili, Fahad F ; Imran, Muhammad ; Altamimi, Abdullah ; Khan, Zafar A.
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  18. The Potential Role of Hybrid Renewable Energy System for Grid Intermittency Problem: A Techno-Economic Optimisation and Comparative Analysis. (2022). Bakht, Muhammad Paend ; Khan, Nuzhat ; Bukar, Abba Lawan ; Salam, Zainal ; Gul, Mehr ; Anjum, Waqas ; Kamaruddin, Mohamad Anuar.
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  19. Discussion of Wind Turbine Performance Based on SCADA Data and Multiple Test Case Analysis. (2022). Terzi, Ludovico ; Pandit, Ravi ; Astolfi, Davide ; Lombardi, Andrea.
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  20. Wind Turbine Performance Decline with Age. (2022). Pandit, Ravi ; Astolfi, Davide.
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  21. Analysing the uncertainties of reanalysis data used for wind resource assessment: A critical review. (2022). Gualtieri, G.
    In: Renewable and Sustainable Energy Reviews.
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  22. Uncovering wind power forecasting uncertainty sources and their propagation through the whole modelling chain. (2022). Giebel, Gregor ; Wessel, Arne ; Kelly, Mark ; Gomen, Tuhfe ; Mohrlen, Corinna ; Yan, Jie.
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  23. Assessing low frequency variations in solar and wind power and their climatic teleconnections. (2022). Kozulj, Roberto ; Guozden, Tomas ; Bianchi, Emilio.
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  24. Optimization of the Operation and Maintenance of renewable energy systems by Deep Reinforcement Learning. (2022). Zio, Enrico ; Compare, Michele ; Ballabio, Guido ; Baraldi, Piero ; Pinciroli, Luca.
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  25. High-resolution large-scale onshore wind energy assessments: A review of potential definitions, methodologies and future research needs. (2022). Landwehr, Natascha ; Klingler, Michael ; Wohland, Jan ; Jansen, Malte ; Weinand, Jann Michael ; Hahmann, Andrea N ; Wehrle, Sebastian ; Gruber, Katharina ; Turkovska, Olga ; Bauer, Christian ; Trondle, Tim ; Staffell, Iain ; Robinius, Martin ; Schmidt, Johannes ; Pickering, Bryn ; Heinrichs, Heidi ; Lilliestam, Johan ; Pfenninger, Stefan ; Larsen, Xiaoli Guo ; McKenna, Russell.
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  26. Validation of the representativeness of wind speed time series obtained from reanalysis data for Brazilian territory. (2022). Maaira, Paula Medina ; Cyrino, Fernando Luiz ; de Aquino, Saulo Custodio.
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  28. Assessment of the levelized cost of energy using a stochastic model. (2022). Hnaien, Faicel ; Safaei, Fatemeh ; Tazi, Nacef.
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  29. Hidden repowering potential of non-repowerable onshore wind sites in Germany. (2022). Breitner, Michael H ; Wielert, Henrik ; Stetter, Chris.
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  30. Measuring the long run technical efficiency of offshore wind farms. (2022). Cattani, Gilles ; Benini, Giacomo.
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  31. Validation of European-scale simulated wind speed and wind generation time series. (2022). Olsen, Bjarke T ; Luzia, Graziela ; Koivisto, Matti Juhani ; Murcia, Juan Pablo ; Als, Magnus ; Sorensen, Poul Ejnar ; Hahmann, Andrea N.
    In: Applied Energy.
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  34. A Stakeholder Analysis of Investments in Wind Power Electricity Generation in Ontario. (2021). Milne, Frank ; Jenkins, Glenn ; Bahramian, Pejman.
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  35. Optimizing the Power Generation of a Wind Farm in Low Wind Speed Regions. (2021). Hijleh, Bassam Abu ; Taleb, Hanan M.
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  36. Analysis of Wind Turbine Aging through Operation Data Calibrated by LiDAR Measurement. (2021). Kim, Jin-Young.
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  37. Estimation of the Performance Aging of the Vestas V52 Wind Turbine through Comparative Test Case Analysis. (2021). Castellani, Francesco ; Byrne, Raymond ; Astolfi, Davide.
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  38. Higher Wind: Highlighted Expansion Opportunities to Repower Wind Energy. (2021). Haces-Fernandez, Francisco.
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  39. A Review on Failure Modes of Wind Turbine Components. (2021). Elsaid, Khaled ; Wilberforce, Tabbi ; Olabi, Abdul Ghani ; Baroutaji, Ahmad ; Abdelkareem, Mohammad Ali ; Salameh, Tareq ; Sayed, Enas Taha.
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  40. Old Wind Farm Life Extension vs. Full Repowering: A Review of Economic Issues and a Stochastic Application for Spain. (2021). Goicoechea, Nestor ; Abadie, Luis M.
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  41. Improvement of AEP Predictions with Time for Swedish Wind Farms. (2021). Sugathan, Aromal ; Gregory, Sean ; Mollerstrom, Erik.
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  42. Critical review of renewable generation datasets and their implications for European power system models. (2021). el Sayed, Omar ; Bilousova, Mariia ; Schyska, Bruno U ; Kies, Alexander ; Stoecker, Horst ; Jurasz, Jakub.
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  43. Offshore wind turbine operations and maintenance: A state-of-the-art review. (2021). Jiang, Zhiyu ; Li, YE ; Verma, Amrit Shankar ; Ren, Zhengru.
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  44. Analysis of scenarios for repowering wind farms in Brazil. (2021). Espindola, Joao Carlos ; de Bona, Jessica Ceolin ; Ordoez, Julian Fernando.
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  45. Numerical model of vertical axis wind turbine performance in realistic gusty wind conditions. (2021). Metzger, M ; Atlaschian, Omid .
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  46. Accurate long-term power generation model for offshore wind farms in Europe using ERA5 reanalysis. (2021). Blakers, Andrew ; Stocks, Matthew ; Hayes, Liam.
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  47. Techno-economic analysis with energy flow modeling for investigating the investment risks related to consumption changes within a standalone microgrid in Sweden. (2021). , Math ; Ronnberg, Sarah K ; Nomm, Jakob.
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  48. Toward hybrid approaches for wind turbine power curve modeling with balanced loss functions and local weighting schemes. (2021). Pawlak, Miroslaw ; Jozani, Mohammad Jafari ; Mehrjoo, Mehrdad.
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  49. Deep decarbonization in Northeastern North America: The value of electricity market integration and hydropower. (2021). Debia, Sebastien ; Rodriguez-Sarasty, Jesus A ; Pineau, Pierre-Olivier.
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  50. A stakeholder analysis of investments in wind power electricity generation in Ontario. (2021). Jenkins, Glenn ; Bahramian, Pejman ; Milne, Frank.
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  51. The price-bidding strategy for investors in a renewable auction: An option games–based study. (2021). Su, Bin ; Zhu, Lei ; Li, LI.
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  52. Optimization of a wind farm by coupled actuator disk and mesoscale models to mitigate neighboring wind farm wake interference from repowering perspective. (2021). Syed, Abdul Haseeb ; Shakir, Sehar ; Javed, Adeel ; Khan, Mehtab Ahmad.
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  53. An energy paradigm transition framework from negative towards positive district energy sharing networks—Battery cycling aging, advanced battery management strategies, flexible vehicles-to-buildings in. (2021). , Jan ; An, J ; Cao, Sunliang ; Zhou, Yuekuan.
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  54. Wind power costs driven by innovation and experience with further reductions on the horizon. (2021). Kitzing, Lena ; Shields, Matt ; Stehly, Tyler ; Lantz, Eric ; Cooperman, Aubryn ; Beiter, Philipp ; Kikuchi, Yuka ; Berkhout, Volker ; Telsnig, Thomas ; Wiser, Ryan.
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  55. Quantifying the ecosystem services values of electricity generation in the US Chihuahuan Desert: A life cycle perspective. (2021). Lee, Jung Hun ; Jordaan, Sarah M ; Moran, Matthew D ; McClung, Maureen R.
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  56. Reviewing methods and assumptions for high-resolution large-scale onshore wind energy potential assessments. (2021). Weinand, Jann Michael ; Hahmann, Andrea N ; Wehrle, Sebastian ; Gruber, Katharina ; Turkovska, Olga ; Staffell, Iain ; Trondle, Tim ; Schmidt, Johannes ; Robinius, Martin ; Heinrichs, Heidi ; Pickering, Bryn ; Pfenninger, Stefan ; Lilliestam, Johan ; McKenna, Russell ; Lars, Xiaoli Guo ; Landwehr, Natascha ; Klingler, Michael ; Wohland, Jan ; Jansen, Malte.
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  57. A stakeholder analysis of investments for wind power electricity generation in Ontario. (2020). Jenkins, Glenn ; Milne, Frank ; Bahramian, Pejman.
    In: Working Paper.
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  58. Influence of Wake Model Superposition and Secondary Steering on Model-Based Wake Steering Control with SCADA Data Assimilation. (2020). Dabiri, John O ; Howland, Michael F.
    In: Energies.
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  59. Less Information, Similar Performance: Comparing Machine Learning-Based Time Series of Wind Power Generation to Renewables.ninja. (2020). Simoes, Sofia G ; Gruber, Katharina ; Baumgartner, Johann ; Schmidt, Johannes ; Saint-Drenan, Yves-Marie.
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  60. A Study of Wind Turbine Performance Decline with Age through Operation Data Analysis. (2020). Castellani, Francesco ; Astolfi, Davide ; Byrne, Raymond ; Hewitt, Neil J.
    In: Energies.
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  61. GoWInD: Wind Energy Spatiotemporal Assessment and Characterization of End-of-Life Activities. (2020). Haces-Fernandez, Francisco.
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    RePEc:gam:jeners:v:13:y:2020:i:22:p:6015-:d:446815.

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  62. Analysis of Wind Turbine Aging through Operation Curves. (2020). Castellani, Francesco ; Byrne, Raymond ; Astolfi, Davide.
    In: Energies.
    RePEc:gam:jeners:v:13:y:2020:i:21:p:5623-:d:435662.

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  63. The Cost of Wind: Negative Economic Effects of Global Wind Energy Development. (2020). Lee, Keunjae ; Dorrell, John.
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  64. Multi-Objective Sizing Optimization of a Grid-Connected Solar–Wind Hybrid System Using Climate Classification: A Case Study of Four Locations in Southern Taiwan. (2020). Wu, Shang-Chen ; Tzou, Jong-Chyuan ; Shivam, Kumar.
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  65. Development of wind energy market in the European Union. (2020). Dunn, James W ; Dubis, Bogdan ; Jankowski, Krzysztof Joef ; Bedycka-Borawska, Aneta ; Borawski, Piotr.
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  66. A parametric model for wind turbine power curves incorporating environmental conditions. (2020). Heier, Siegfried ; Simes, Sofia G ; Gruber, Katharina ; Schmidt, Johannes ; Dubus, Laurent ; Troccoli, Alberto ; Staffell, Iain ; Jansen, Malte ; Besseau, Romain ; Saint-Drenan, Yves-Marie.
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  67. Analysis of United Kingdom offshore wind farm performance using public data: Improving the evidence base for policymaking. (2020). Strachan, Peter A ; Broadbent, Ian D ; Aldersey-Williams, John.
    In: Utilities Policy.
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  68. Competitive and risk-adequate auction bids for onshore wind projects in Germany. (2020). Breitner, Michael H ; Piel, Jan-Hendrik ; Stetter, Chris.
    In: Energy Economics.
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  69. Partial repowering analysis of a wind farm by turbine hub height variation to mitigate neighboring wind farm wake interference using mesoscale simulations. (2020). Calhoun, Ronald ; Asim, Raja M ; Javed, Adeel ; Syed, Abdul Haseeb.
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  70. Have wind turbines in Germany generated electricity as would be expected from the prevailing wind conditions in 2000-2014?. (2019). Kleidon, Axel ; Germer, Sonja.
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  71. The use of real option in condition-based maintenance scheduling for wind turbines with production and deterioration uncertainties. (2019). Grall, Antoine ; Fouladirad, Mitra ; Ghamlouch, Houda.
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  72. Assessment of Renewable Energy Deployment Roadmaps. (2019). Mauleón, Ignacio ; Mauleon, Ignacio.
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  73. Assessing the cost of onshore wind development scenarios: Modelling of spatial and temporal distribution of wind power for the case of Poland. (2019). Fortin, M ; Hoffmann, B ; Eberbach, J ; Sliz-Szkliniarz, B.
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  74. Machine-learning methods for integrated renewable power generation: A comparative study of artificial neural networks, support vector regression, and Gaussian Process Regression. (2019). Shah, Nilay ; Sikinioti-Lock, Alexandra ; Sharifzadeh, Mahdi.
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Cocites

Documents in RePEc which have cited the same bibliography

  1. Classification of tall tower meteorological variables and forecasting wind speeds in Columbia, Missouri. (2023). Lupo, Anthony ; Fox, Neil ; Balkissoon, Sarah ; Penny, Stephen G ; Haupt, Sue Ellen.
    In: Renewable Energy.
    RePEc:eee:renene:v:217:y:2023:i:c:s0960148123010376.

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  2. On the influence of wind speed model resolution on the global technical wind energy potential. (2022). Schindler, Dirk ; Jung, Christopher.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:156:y:2022:i:c:s1364032121012648.

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  3. Fractal characteristics of tall tower wind speeds in Missouri. (2020). Fox, Neil ; Balkissoon, Sarah ; Lupo, Anthony.
    In: Renewable Energy.
    RePEc:eee:renene:v:154:y:2020:i:c:p:1346-1356.

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  4. .

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  6. Wind speed distribution selection – A review of recent development and progress. (2019). Schindler, Dirk ; Jung, Christopher.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:114:y:2019:i:c:46.

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  7. Assessing the cost of onshore wind development scenarios: Modelling of spatial and temporal distribution of wind power for the case of Poland. (2019). Fortin, M ; Hoffmann, B ; Eberbach, J ; Sliz-Szkliniarz, B.
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:109:y:2019:i:c:p:514-531.

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  8. A comprehensive review on wind resource extrapolation models applied in wind energy. (2019). Gualtieri, Giovanni .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:102:y:2019:i:c:p:215-233.

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  9. Evaluation of alternative power production efficiency metrics for offshore wind turbines and farms. (2018). Niu, Briana ; Ding, YU ; Zeng, LI ; Hwangbo, Hoon.
    In: Renewable Energy.
    RePEc:eee:renene:v:128:y:2018:i:pa:p:81-90.

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  10. A decision support tool to assist with lifetime extension of wind turbines. (2018). Rubert, T ; Niewczas, P ; McMillan, D.
    In: Renewable Energy.
    RePEc:eee:renene:v:120:y:2018:i:c:p:423-433.

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  11. Atmospheric stability varying wind shear coefficients to improve wind resource extrapolation: A temporal analysis. (2016). Gualtieri, Giovanni .
    In: Renewable Energy.
    RePEc:eee:renene:v:87:y:2016:i:p1:p:376-390.

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  12. Evaluating capital and operating cost efficiency of offshore wind farms: A DEA approach. (2015). Ederer, Nikolaus .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:42:y:2015:i:c:p:1034-1046.

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  13. Using reanalysis data to quantify extreme wind power generation statistics: A 33 year case study in Great Britain. (2015). Brayshaw, D. J. ; Coker, P. J. ; Methven, J. ; Lenaghan, D. ; Cannon, D. J..
    In: Renewable Energy.
    RePEc:eee:renene:v:75:y:2015:i:c:p:767-778.

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  14. Data mining techniques for performance analysis of onshore wind farms. (2015). Astolfi, Davide ; Terzi, Ludovico ; Garinei, Alberto ; Castellani, Francesco.
    In: Applied Energy.
    RePEc:eee:appene:v:148:y:2015:i:c:p:220-233.

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  15. How does wind farm performance decline with age?. (2014). Staffell, Iain ; Green, Richard.
    In: Renewable Energy.
    RePEc:eee:renene:v:66:y:2014:i:c:p:775-786.

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  16. A methodological review to estimate techno-economical wind energy production. (2013). Schallenberg-Rodriguez, Julieta .
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:21:y:2013:i:c:p:272-287.

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  17. Addressing the technical and market challenges to high wind power integration in Ireland. (2013). Foley, A. M. ; Leahy, P. G. ; o Gallachoir, B. P., ; McKeogh, E. J. ; Milborrow, D..
    In: Renewable and Sustainable Energy Reviews.
    RePEc:eee:rensus:v:19:y:2013:i:c:p:692-703.

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  18. Windtane contour map of the state of Texas. (2013). Chang, Byungik ; Issa, Roy ; Starcher, Kenneth ; Chen, Gerald ; Leer, Donald ; Carr, David .
    In: Renewable Energy.
    RePEc:eee:renene:v:58:y:2013:i:c:p:140-150.

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  19. A study into the accuracy of using meteorological wind data to estimate turbine generation output. (2013). Hunt, C. ; Coker, P. J. ; Kubik, M. L. ; Barlow, J. F..
    In: Renewable Energy.
    RePEc:eee:renene:v:51:y:2013:i:c:p:153-158.

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  20. Protection of interconnected wind turbines against lightning effects: Overvoltages and electromagnetic transients study. (2012). Catalão, J. P. S., ; Rodrigues, R. B. ; Mendes, V. M. F., .
    In: Renewable Energy.
    RePEc:eee:renene:v:46:y:2012:i:c:p:232-240.

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  21. A model for vertical wind speed data extrapolation for improving wind resource assessment using WAsP. (2012). urii, eljko ; Mikulovi, Jovan.
    In: Renewable Energy.
    RePEc:eee:renene:v:41:y:2012:i:c:p:407-411.

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  22. Investigation of wind shear coefficients and their effect on electrical energy generation. (2011). Fartan, Ebubekir ; Akdaa, Seyit Ahmet ; Gler, Nder .
    In: Applied Energy.
    RePEc:eee:appene:v:88:y:2011:i:11:p:4097-4105.

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