Zobrazeno 1 - 10
of 35
pro vyhledávání: '"W. Schlez"'
Autor:
P. Bradstock, W. Schlez
Publikováno v:
Wind Energy Science, Vol 5, Pp 1425-1434 (2020)
This paper details the background to the WakeBlaster model: a purpose-built, parabolic three-dimensional RANS solver, developed by ProPlanEn. WakeBlaster is a field model, rather than a single turbine model; it therefore eliminates the need for an em
Externí odkaz:
https://doaj.org/article/2f3f014175404f219a4d09708463186e
Autor:
Kelsey Shaler, Nicholas Hamilton, Eliot Quon, Christopher Lee Kelley, Dave Maniaci, Emmanuel Branlard, Gerald Steinfeld, Paula Doubrawa, Thomas Herges, Alan S. Hsieh, W. Schlez, Søren Juhl Andersen, Marie Cathelain, Patrick Moriarty, Sonja Krueger, Paul van der Laan, Frédéric Blondel, Sascha Schmidt, Myra Blaylock, Luis A. Martínez-Tossas, Laura J. Lukassen, Mithu Debnath, Jason Jonkman
Publikováno v:
Wind Energy
Wind Energy, Wiley, 2020, 23 (11), pp.2027-2055. ⟨10.1002/we.2543⟩
Wind Energy, Wiley, 2020, 23 (11), pp.2027-2055. ⟨10.1002/we.2543⟩
International audience; Previous research has revealed the need for a validation study that considers several wake quantities and code types so that decisions on the trade‐off between accuracy and computational cost can be well informed and appropr
Autor:
Sascha Schmidt, Marie Cathelain, Bibiana García Hevia, Laure Grignon, Bowen Li, Per Halkjær Nielsen, Pedro M. Fernandes Correia, W. Schlez, Fernando Borbón Guillén, Javier Sanz Rodrigo, David Pullinger, Sukanta Basu, Cédric Dall’Ozzo
Publikováno v:
Journal of Physics: Conference Series
Journal of Physics: Conference Series, IOP Publishing, 2020, 1618 (6), pp.062044. ⟨10.1088/1742-6596/1618/6/062044⟩
Journal of Physics: Conference Series, 1618
Journal of Physics: Conference Series, IOP Publishing, 2020, 1618 (6), pp.062044. ⟨10.1088/1742-6596/1618/6/062044⟩
Journal of Physics: Conference Series, 1618
International audience; The growing size of wind turbines and wind farms in the offshore environment, eventually occupying tens of kilometers and extending beyond 200 m in height, has challenged traditional wind farm models to incorporate larger atmo
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::723f98286da143c008a4e9d86a662517
https://hal-ifp.archives-ouvertes.fr/hal-03010396/document
https://hal-ifp.archives-ouvertes.fr/hal-03010396/document
Autor:
Frédéric Blondel, Patrick Moriarty, Søren Juhl Andersen, Paul van der Laan, Luis A. Martínez-Tossas, Laura J. Lukassen, Christopher Lee Kelley, Sonja Krueger, Jason Jonkman, Marie Cathelain, Mithu Debnath, Nicholas Hamilton, Gerald Steinfeld, Myra Blaylock, Paula Doubrawa, Sascha Schmidt, Eliot Quon, Dave Maniaci, Emmanuel Branlard, Thomas Herges, W. Schlez, Kelsey Shaler, Alan S. Hsieh
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::52700490ddc1cd30614847dce7a45e13
https://doi.org/10.1002/we.2543/v2/response1
https://doi.org/10.1002/we.2543/v2/response1
Autor:
S. Neckelmann, Leo E. Jensen, W. Schlez, Sten Tronæs Frandsen, Kurt Schaldemose Hansen, Sara C. Pryor, K. Rados, J.G. Schepers, Rebecca Jane Barthelmie, A. Neubert
Publikováno v:
Journal of Atmospheric and Oceanic Technology. 27:1302-1317
There is an urgent need to develop and optimize tools for designing large wind farm arrays for deployment offshore. This research is focused on improving the understanding of, and modeling of, wind turbine wakes in order to make more accurate power o
Autor:
Ole Rathmann, Sten Tronæs Frandsen, W. Schlez, E.S. Politis, K. Rados, Rebecca Jane Barthelmie, J.G. Schepers, John D. Phillips, P. Chaviaropoulos, Kurt Schaldemose Hansen, Arthouros Zervos
Publikováno v:
Wind Energy. 12:431-444
Average power losses due to wind turbine wakes are of the order of 10 to 20% of total power output in large offshore wind farms. Accurately quantifying power losses due to wakes is, therefore, an important part of overall wind farm economics. The foc
Autor:
Hans Bergström, Hans Ejsing Jørgensen, P. Vølund, S. Neckelmann, T. Hegberg, Rebecca Jane Barthelmie, Bernhard Lange, W. Schlez, Sara C. Pryor, Gunner Chr. Larsen, K. Rados, Søren C. Mogensen, G. Schepers, L. Folkerts, M. Magnusson
Publikováno v:
Wind Energy. 7:225-245
ENDOW: Efficient Development of Offshore Windfarms: modelling wake and boundary-layer interactions
Publikováno v:
Wind Engineering. 25:307-316
Gerard Schepers1, Rebecca Barthelmie2, Kostas Rados3, Bernhard Lange4 and Wolfgang Schlez5 1Energy Research Centre,Wind Energy, 1755 ZG Petten,The Netherlands. E-mail 2Wind Energy Dept., Riso National Laboratory, 40 0 0 Roskilde, Denmark 3The Robert
Autor:
A. Umaña, T. Hegberg, W. Schlez, Bernhard Lange, Gunner Chr. Larsen, K. Rados, G. Schepers, Rebecca Jane Barthelmie
Publikováno v:
Wind Engineering. 25:281-287
The partners in the ENDOW (Efficient Development of Offshore Windfarms) project are validating, testing, designing and improving wind farm design tools for the efficient design of offshore wind farms. The different meteorological conditions offshore
Autor:
K. Rados, M. Magnusson, G. Schepers, L.C. Christensen, S. Neckelmann, Hans Bergström, Rebecca Jane Barthelmie, L. Folkerts, Bernhard Lange, P. Vølund, W. Schlez, T. Hegberg, Gunner Chr. Larsen
Publikováno v:
Wind Engineering. 25:263-270
The objective of the ENDOW project is to evaluate, enhance and interface wake and boundary-layer models for utilisation in developing offshore windfarms. The model hierarchy will form the basis of design tools for use by wind energy developers and tu