Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Assessing offshore wind power resources in British Columbia

View through CrossRef
Wind resources are investigated and estimated offshore of the northern and central coasts of British Columbia, Canada. Remote sensing-based wind speed observations from a Synthetic Aperture Radar (SAR) mounted on the Canadian RADARSAT-2 satellite are used for mapping offshore winds. In addition, in-situ wind speed observations extracted from several buoys distributed in the study region are used to analyze the temporal and spatial wind speed variations in relation to wind power generation. Sustained winds above several wind turbine thresholds are analyzed and values of 50-yr and 100-yr return extreme wind speed levels are calculated. The wind variability analysis suggests few interruptions to power generation by either very low wind speeds or extreme wind speed events with high spatial variability between offshore areas and sites located within the coastal mountains. The SAR wind speed fields are characterized by a high spatial resolution but cover a period of less than 2.5 years with a random temporal availability. The SAR fields are extrapolated to reanalysis long-term wind fields that are available over a climatological time period with a sub-daily temporal resolution but a coarse spatial resolution. The extrapolation procedure is developed by applying a statistical downscaling model and a bias-based correction method. Wind fields from both methods are validated against the in-situ observations from buoys. The extrapolated wind fields are used for mapping offshore winds by creating a robust wind climatology that represents the mesoscale wind variance as well as the diurnal wind variability. This wind climatology is used to calculate the wind statistics and power density, in addition to estimate offshore wind resources. Viable areas for wind power development are defined by using high resolution bathymetric data and considering the general environmental and ecological constraints in the region. The estimated offshore wind resource energy using only theiv determined viable areas is found to resemble a large portion of the current total power generation in British Columbia. Most suitable areas for offshore wind farms are determined by developing criteria based on a combination of the turbine tower technology, water depth zoning and power density values.
University of Northern British Columbia
Title: Assessing offshore wind power resources in British Columbia
Description:
Wind resources are investigated and estimated offshore of the northern and central coasts of British Columbia, Canada.
Remote sensing-based wind speed observations from a Synthetic Aperture Radar (SAR) mounted on the Canadian RADARSAT-2 satellite are used for mapping offshore winds.
In addition, in-situ wind speed observations extracted from several buoys distributed in the study region are used to analyze the temporal and spatial wind speed variations in relation to wind power generation.
Sustained winds above several wind turbine thresholds are analyzed and values of 50-yr and 100-yr return extreme wind speed levels are calculated.
The wind variability analysis suggests few interruptions to power generation by either very low wind speeds or extreme wind speed events with high spatial variability between offshore areas and sites located within the coastal mountains.
The SAR wind speed fields are characterized by a high spatial resolution but cover a period of less than 2.
5 years with a random temporal availability.
The SAR fields are extrapolated to reanalysis long-term wind fields that are available over a climatological time period with a sub-daily temporal resolution but a coarse spatial resolution.
The extrapolation procedure is developed by applying a statistical downscaling model and a bias-based correction method.
Wind fields from both methods are validated against the in-situ observations from buoys.
The extrapolated wind fields are used for mapping offshore winds by creating a robust wind climatology that represents the mesoscale wind variance as well as the diurnal wind variability.
This wind climatology is used to calculate the wind statistics and power density, in addition to estimate offshore wind resources.
Viable areas for wind power development are defined by using high resolution bathymetric data and considering the general environmental and ecological constraints in the region.
The estimated offshore wind resource energy using only theiv determined viable areas is found to resemble a large portion of the current total power generation in British Columbia.
Most suitable areas for offshore wind farms are determined by developing criteria based on a combination of the turbine tower technology, water depth zoning and power density values.

Related Results

Wind lidars within Dutch offshore wind farms
Wind lidars within Dutch offshore wind farms
The growing number of wind farms in the Dutch part of the North Sea [1] offers the necessity, as well as the opportunity, to measure the meteorological conditions at these location...
Contributions of flywheel systems in wind power plants
Contributions of flywheel systems in wind power plants
The stepwise replacement of conventional power plants by renewable-based ones such as wind power plants could a ect the system behaviour and planning. First, the network stability ...
Alternative Offshore Foundation Installation Methods
Alternative Offshore Foundation Installation Methods
Abstract According to the European Wind Energy Association (EWEA) in the first six months of 2012, Europe installed and fully grid connected 132 offshore wind tur...
A Reliability-Based Interpretation Framework for Pile-Supported Offshore Wind Turbines
A Reliability-Based Interpretation Framework for Pile-Supported Offshore Wind Turbines
Abstract Offshore wind turbines are becoming one of the main sources of renewable energy in Western Europe. The majority of these wind turbines are supported by p...
Multiterminal HVDC transmissions systems for offshore wind
Multiterminal HVDC transmissions systems for offshore wind
Offshore wind is emerging as one of the future energy vectors. Offshore wind power plants locations provide more strong and constant wind speed that allows to extract more power co...
Benefits of an Integrated Power and Hydrogen Offshore Grid in a Net-Zero North Sea Energy System
Benefits of an Integrated Power and Hydrogen Offshore Grid in a Net-Zero North Sea Energy System
The North Sea Offshore Grid concept has been envisioned as a promising alternative to: 1) ease the integration of offshore wind and onshore energy systems, and 2) increase the cros...
Savonius Rotor for Offshore Wind Energy Conversion
Savonius Rotor for Offshore Wind Energy Conversion
Abstract Analysis of performance is presented for wind energy conversion by a Savonius type vertical axis rotor configured for generation of electrical power. The...
Potential of Offshore Wind Energy in Australia
Potential of Offshore Wind Energy in Australia
Abstract Offshore wind energy has attracted great attention from numerous committees including governments, academics and engineers and energy companies due to gr...

Back to Top