A boundary layer scaling technique for estimating near-surface wind energy using numerical weather prediction and wind map data
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DOI: 10.1016/j.apenergy.2017.09.029
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Cited by:
- Zhang, Zhendong & Dai, Huichao & Jiang, Dingguo & Yu, Yi & Tian, Rui, 2024. "Multi-step ahead forecasting of wind vector for multiple wind turbines based on new deep learning model," Energy, Elsevier, vol. 304(C).
- Yang, Mao & Che, Runqi & Yu, Xinnan & Su, Xin, 2024. "Dual NWP wind speed correction based on trend fusion and fluctuation clustering and its application in short-term wind power prediction," Energy, Elsevier, vol. 302(C).
- Lv, Yunlong & Hu, Qin & Xu, Hang & Lin, Huiyao & Wu, Yufan, 2024. "An ultra-short-term wind power prediction method based on spatial-temporal attention graph convolutional model," Energy, Elsevier, vol. 293(C).
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Keywords
Near-surface wind; Wind resource assessment; Small and medium scale wind turbine; Boundary layer scaling; Numerical weather prediction;All these keywords.
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