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Keywords: wind energy
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Journal Articles
Int. J. Offshore Polar Eng. 33 (01): 1–9.
Paper Number: ISOPE-23-33-1-001
Published: 01 March 2023
.... Wind energy harvesting has received increasing attention because wind is a nonpolluting, renewable resource (Chehouri et al., 2015), and the increase in harvesting is responsible for the promising growth of wind turbine technology. According to the 2021 Global Wind Energy Report (Global Wind Energy...
Journal Articles
Int. J. Offshore Polar Eng. 33 (01): 10–17.
Paper Number: ISOPE-23-33-1-010
Published: 01 March 2023
... in the stage of small-scale development. With the rapid maturity of technology and the continuous emergence of demonstration projects, it is expected to realize large-scale commercial development by 2030. According to the prediction of the European Wind Energy Association (now WindEurope), the global installed...
Journal Articles
Int. J. Offshore Polar Eng. 33 (01): 81–89.
Paper Number: ISOPE-23-33-1-081
Published: 01 March 2023
..., reduction of electricity generation costs— i.e., Levelized Cost of Energy (LCoE)—has gained massive importance in wind energy. The effects of LCoE optimization include significantly faster increases in rotor diameter and turbine rating, as well as pressure to generate even more cost-effective plants...
Journal Articles
Int. J. Offshore Polar Eng. 32 (04): 394–401.
Paper Number: ISOPE-22-32-4-394
Published: 01 December 2022
... engineering applications (Gopinath and Dwarakish, 2015). 14 7 2022 28 8 2022 28 8 2022 1 12 2022 1 12 2022 Copyright 2022, The International Society of Offshore and Polar Engineers artificial intelligence elevation prediction prediction accuracy sery wind energy...
Journal Articles
Int. J. Offshore Polar Eng. 32 (04): 411–417.
Paper Number: ISOPE-22-32-4-411
Published: 01 December 2022
... deep learning wind energy forecast international journal predictor application lstm forecasting sea state forecast neural network subsea system barent sea sarima polar engineering xgboost algorithm International Journal of Offshore and Polar Engineering (ISSN 1053-5381) Copyright ©...
Journal Articles
Int. J. Offshore Polar Eng. 32 (03): 338–347.
Paper Number: ISOPE-22-32-3-338
Published: 16 September 2022
... of Offshore and Polar Engineers subsea system equation platform mooring system turbine amplitude response wind energy tlpwt wave international journal tension-leg-platform wind turbine excited upstream oil & gas frequency turbine thrust simulation third-harmonic force fenton surge...
Journal Articles
Int. J. Offshore Polar Eng. 32 (02): 201–209.
Paper Number: ISOPE-22-32-2-201
Published: 01 June 2022
...Christoph Bleicher; Jan Niewiadomski; Axel Kansy; Heinz Kaufmann The increasing need for lighter components for wind energy application led to an increasing afford in the foundries to develop high-strength nodular cast iron materials (GJS) offering both high strength and high ductility. High...
Journal Articles
Int. J. Offshore Polar Eng. 32 (02): 210–217.
Paper Number: ISOPE-22-32-2-210
Published: 01 June 2022
... years. According to WindEurope’s technical reports, the European Union (EU) renewable policies aim to achieve at least 27% of the final energy consumption from renewable energy sources by the end of 2030. Therefore, a total of 323 GW of cumulative wind energy projects are planned to be installed...
Journal Articles
Int. J. Offshore Polar Eng. 32 (01): 39–48.
Paper Number: ISOPE-22-32-1-039
Published: 01 March 2022
... responsibility floating production system fowt floating production storage and offloading frequency wind energy floating production storage & offloading renewable energy time history qalefoam fowt system international journal wind turbine wave inlet boundary free surface boundary solver...
Journal Articles
Int. J. Offshore Polar Eng. 32 (01): 81–86.
Paper Number: ISOPE-22-32-1-081
Published: 01 March 2022
... Council. REFERENCES Ahsbahs, T, Badger, M, Volker, P, Hansen, KS, and Hasager, CB (2018). Applications of Satellite Winds for the Offshore Wind Farm Site Anholt, Wind Energy Sci, 3, 573 588. httpsdoi.org/10.5194/wes-3-573-2018. Ahsbahs T, Nygaard NG, Newcombe A, and Badger, M (2020). Wind Farm Wakes...
Journal Articles
Int. J. Offshore Polar Eng. 32 (01): 97–106.
Paper Number: ISOPE-22-32-1-097
Published: 01 March 2022
... 1 3 2022 Copyright 2022, The International Society of Offshore and Polar Engineers wind energy upstream oil & gas reference period sustainability shi yard social responsibility different reference period npd wind profile gas field recording interval correction factor...
Journal Articles
Int. J. Offshore Polar Eng. 31 (03): 354–362.
Paper Number: ISOPE-21-31-3-354
Published: 01 September 2021
... basis of fatigue tests is vital for the optimization of these structures. 12 1 2021 24 3 2021 1 9 2021 1 9 2021 2021. The International Society of Offshore and Polar Engineers renewable energy germany international journal calibration factor wind energy thickness...
Journal Articles
Int. J. Offshore Polar Eng. 31 (01): 121–128.
Paper Number: IJOPE-21-31-1-121
Published: 01 March 2021
... 2021. The International Society of Offshore and Polar Engineers subsea system social responsibility hydroelasticity sustainable development renewable energy structural model offshore projects planning and execution artificial intelligence frequency fowt correspond wind energy...
Journal Articles
Int. J. Offshore Polar Eng. 31 (01): 19–26.
Paper Number: IJOPE-21-31-1-019
Published: 01 March 2021
... renewables and offshore wind energy. The characteristics only imposes loads on the structures but also interacts with steep and effect of a wave on the structure must be analyzed as a part waves and in uences the formation of extreme waves, particularly of the design process. A vast amount of work has been...
Journal Articles
Int. J. Offshore Polar Eng. 30 (03): 275–282.
Paper Number: ISOPE-20-30-3-275
Published: 01 September 2020
... quality frequency resolution time-frequency analysis method wind energy sustainability time-frequency analysis result wavelet transform spectrum stft liu wavelet international journal offshore wind turbine International Journal of Offshore and Polar Engineering (ISSN 1053-5381...
Journal Articles
Int. J. Offshore Polar Eng. 30 (03): 257–265.
Paper Number: ISOPE-20-30-3-257
Published: 01 September 2020
... understand the wake interaction phenomenon, the aerodynamic power coefficients and basic features of both the near and far wake, including the distribution characteristics of the mean wake velocity and vortex structures, are studied in detail. INTRODUCTION With the rapid development of wind energy technology...
Journal Articles
Int. J. Offshore Polar Eng. 30 (03): 266–274.
Paper Number: ISOPE-20-30-3-266
Published: 01 September 2020
... proportion of wind energy generation capacity due to the abundance of wind potential and the open space for installation (Koh and Ng, 2016; Wang et al., 2018). Currently, most offshore wind turbines have been installed in shallow water on bottom-mounted substructures, and monopiles are often used...
Journal Articles
Int. J. Offshore Polar Eng. 30 (02): 240–247.
Paper Number: ISOPE-20-30-2-240
Published: 01 June 2020
...., Lehane et al., 2005; Cathie, 2012) have shown that the application of the Main Text method, at least for foundation piles of wind energy converters, is not reliable and may lead to a significant deviation compared with the real in situ bearing capacity. To enhance the reliability of design methods, four...
Journal Articles
Int. J. Offshore Polar Eng. 30 (02): 220–227.
Paper Number: ISOPE-20-30-2-220
Published: 01 June 2020
.... httpsdoi.org/10.1016/S0266-8920(97)00036-2. Mattingley, J (2011). Code Generation for Embedded Convex Optimization, Thesis Dissertation, Stanford University, Palo Alto, CA, USA. httpspurl.stanford.edu/qd834ss0073. Moné, C, et al. (2017). 2015 Cost of Wind Energy Review, Techni- cal Report NREL/TP-6A2066861...
Journal Articles
Int. J. Offshore Polar Eng. 30 (01): 112–119.
Paper Number: ISOPE-20-30-1-112
Published: 01 March 2020
... jacket-type substructure fatigue analysis Offshore Wind Turbine load case wind load fatigue damage substructure wind energy renewable energy dlc multi-planar tubular joint tubular joint wind speed time-domain fatigue analysis 1 3 2020 1 3 2020 2020. The International...

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