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Dive into the research topics where Tobias Torben Ahsbahs is active.

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Featured researches published by Tobias Torben Ahsbahs.


Remote Sensing | 2017

Validation of Sentinel-1A SAR Coastal Wind Speeds Against Scanning LiDAR

Tobias Torben Ahsbahs; Merete Badger; Ioanna Karagali; Xiaoli Guo Larsén

High-accuracy wind data for coastal regions is needed today, e.g., for the assessment of wind resources. Synthetic Aperture Radar (SAR) is the only satellite borne sensor that has enough resolution to resolve wind speeds closer than 10 km to shore but the Geophysical Model Functions (GMF) used for SAR wind retrieval are not fully validated here. Ground based scanning light detection and ranging (LiDAR) offer high horizontal resolution wind velocity measurements with high accuracy, also in the coastal zone. This study, for the first time, examines accuracies of SAR wind retrievals at 10 m height with respect to the distance to shore by validation against scanning LiDARs. Comparison of 15 Sentinel-1A wind retrievals using the GMF called C-band model 5.N (CMOD5.N) versus LiDARs show good agreement. It is found, when nondimenionalising with a reference point, that wind speed reductions are between 4% and 8% from 3 km to 1 km from shore. Findings indicate that SAR wind retrievals give reliable wind speed measurements as close as 1 km to the shore. Comparisons of SAR winds versus two different LiDAR configurations yield root mean square error (RMSE) of 1.31 ms − 1 and 1.42 ms − 1 for spatially averaged wind speeds.


EWEA Technology Workshop: Resource Assessment 2015 | 2015

The new worldwide microscale wind resource assessment data on IRENA’s Global Atlas. The EUDP Global Wind Atlas

Jake Badger; Neil Davis; Andrea N. Hahmann; Bjarke Tobias Olsen; Xiaoli Guo Larsén; Mark C. Kelly; Patrick Volker; Merete Badger; Tobias Torben Ahsbahs; Niels Gylling Mortensen; Hans Ejsing Jørgensen; Erik Lundtang Petersen; Julia Lange; Nicolas Fichaux


Wind Energy Science Discussions | 2018

Applications of satellite winds for the offshore wind farm site Anholt

Tobias Torben Ahsbahs; Merete Badger; Patrick Volker; Kurt Schaldemose Hansen; Charlotte Bay Hasager


Vindkraftnet meeting | 2018

Comparisons of winds from satellite SAR, WRF and SCADA to characterize coastal gradients and wind farm wake effects at Anholt wind farm

Charlotte Bay Hasager; Tobias Torben Ahsbahs; Merete Badger; Kurt Schaldemose Hansen; Patrick Volker


The EGU General Assembly | 2018

Large Scale Offshore Wake Impact on the Danish Power System

Xiaoli Guo Larsén; Patrick Volker; Poul Ejnar Sørensen; Jesper Nissen; Jianting Du; Gregor Giebel; Søren Ott; Charlotte Bay Hasager; Petr Maule; Andrea N. Hahmann; Tobias Torben Ahsbahs; Jake Badger


Seasar2018 - advance in sar oceanography | 2018

SAR Wind Maps and Derived Products: New Possibilities for Offshore Wind Energy Exploitation

Merete Badger; Tobias Torben Ahsbahs; Ioanna Karagali; Charlotte Bay Hasager


Seasar2018 - advance in sar oceanography | 2018

Using SAR for Characterization of Offshore Wind Farm Wakes and Coastal Wind Speed Gradients

Charlotte Bay Hasager; Tobias Torben Ahsbahs; Merete Badger; Kurt Schaldemose Hansen; Patrick Volker


Wind Energy Science Conference 2017 | 2017

Offshore winds from a new generation of European satellites

Merete Badger; Ioanna Karagali; Tobias Torben Ahsbahs; Charlotte Bay Hasager


Offshore Wind Energy Conference | 2017

Anholt offshore wind farm wake investigated from satellite data and wake models

Charlotte Bay Hasager; Merete Badger; Kurt Schaldemose Hansen; Alfredo Pena Diaz; Søren Ott; Patrick Volker; Paul van der Laan; Tobias Torben Ahsbahs


Archive | 2016

Report on RUNE’s coastal experiment and first inter-comparisons between measurements systems

Rogier Ralph Floors; Guillaume Lea; Alfredo Pena Diaz; Ioanna Karagali; Tobias Torben Ahsbahs

Collaboration


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Merete Badger

Technical University of Denmark

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Charlotte Bay Hasager

Technical University of Denmark

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Patrick Volker

Technical University of Denmark

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Alfredo Pena Diaz

Technical University of Denmark

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Kurt Schaldemose Hansen

Technical University of Denmark

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Andrea N. Hahmann

Technical University of Denmark

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Jake Badger

Technical University of Denmark

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Xiaoli Guo Larsén

United States Department of Energy

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Ioanna Karagali

Technical University of Denmark

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Søren Ott

Technical University of Denmark

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