Advancing Offshore Wind Resource Characterization Using Buoy-Based Observations

被引:7
|
作者
Gorton, Alicia M. [1 ]
Shaw, Will J. [1 ]
机构
[1] Pacific Northwest Natl Lab, 902 Battelle Blvd, Richland, WA 99354 USA
关键词
offshore wind energy; lidar buoy; floating lidar system; wind resource characterization; model validation;
D O I
10.4031/MTSJ.54.6.5
中图分类号
P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
As countries continue to implement sustainable and renewable energy goals, the need for affordable low-carbon technologies, including those related to offshore wind energy, is accelerating. The U.S. federal government recognizes the environmental and economic benefits of offshore wind development and is taking the necessary steps to overcome critical challenges facing the industry to realize these benefits. The U.S. Department of Energy (DOE) is investing in buoy mounted lidar systems to facilitate offshore measurement campaigns that will advance our understanding of the offshore environment and provide the observational data needed for model validation, particularly at hub height where offshore observations are particularly lacking. On behalf of the DOE, the Pacific Northwest National Laboratory manages a Lidar Buoy Program that facilitates meteorological and oceanographic data collection using validated methods to support the U.S. offshore wind industry. Since being acquired in 2014, two DOE lidar buoys have been deployed on the U.S. east and west coasts, and their data represent the first publicly available multi -seasonal hub height data to be collected in U.S. waters. In addition, the buoys have undergone performance testing, significant upgrades, and a lidar validation campaign to ensure the accuracy and reliability of the lidar data needed to support wind resource characterization and model validation (the lidars were validated against a reference lidar installed on the Air-Sea Interaction Tower operated by the Woods Hole Oceanographic Institution). The Lidar Buoy Program is providing valuable offshore data to the wind energy community, while focusing data collection on areas of acknowledged high priority.
引用
收藏
页码:37 / 43
页数:7
相关论文
共 50 条
  • [1] Validation of Reanalysis-Based Offshore Wind Resource Characterization Using Lidar Buoy Observations
    Sheridan, Lindsay M.
    Krishnamurthy, Raghavendra
    Gorton, Alicia M.
    Shaw, Will J.
    Newsom, Rob K.
    MARINE TECHNOLOGY SOCIETY JOURNAL, 2020, 54 (06) : 44 - 61
  • [2] Contributing to Long-term Wind Resource Characterization through Buoy-based Observations of Meteorological and Oceanographic Conditions
    Gorton, Alicia M.
    Newsom, Rob K.
    Shaw, William J.
    Draher, Jennifer
    OCEANS 2019 MTS/IEEE SEATTLE, 2019,
  • [4] Advancing mechanical testing of biological tissues and hydrogels: A buoy-based approach
    Tuttle, Tyler
    Deuel, Daniel
    Calve, Sarah
    Rady, Paul M.
    JOURNAL OF BIOMECHANICS, 2025, 178
  • [5] Tracking fish using 'buoy-based' GPS telemetry
    Riding, T. A. C.
    Dennis, T. E.
    Stewart, C. L.
    Walker, M. M.
    Montgomery, J. C.
    MARINE ECOLOGY PROGRESS SERIES, 2009, 377 : 255 - 262
  • [6] Characterization of ASCAT measurements based on buoy and QuikSCAT wind vector observations
    Bentamy, A.
    Croize-Fillon, D.
    Perigaud, C.
    OCEAN SCIENCE, 2008, 4 (04) : 265 - 274
  • [7] Reconciling Discrepancies Between Airborne and Buoy-Based Measurements of Wind Stress Over Mixed Seas
    Héctor García-Nava
    Francisco J. Ocampo-Torres
    Paul A. Hwang
    Boundary-Layer Meteorology, 2015, 155 : 515 - 526
  • [8] Reconciling Discrepancies Between Airborne and Buoy-Based Measurements of Wind Stress Over Mixed Seas
    Garcia-Nava, Hector
    Ocampo-Torres, Francisco J.
    Hwang, Paul A.
    BOUNDARY-LAYER METEOROLOGY, 2015, 155 (03) : 515 - 526
  • [9] Validation of the first LiDAR wind resource assessment buoy system offshore the Northeast United States
    Viselli, Anthony
    Filippelli, Matthew
    Pettigrew, Neal
    Dagher, Habib
    Faessler, Nathan
    WIND ENERGY, 2019, 22 (11) : 1548 - 1562
  • [10] Spectral separation of wind sea and swell based on buoy observations
    Liu, Yan
    Hao, Zengzhou
    Gong, Fang
    Wang, Tianyu
    Chen, Jianyu
    REMOTE SENSING OF THE OCEAN, SEA ICE, COASTAL WATERS, AND LARGE WATER REGIONS 2015, 2015, 9638