Various sources of risk exist for all civil structures, one of which is seismic risk. As structures change in scale, the magnitude of seismic risk changes relative to risk from other sources. This paper presents an introduction to seismic hazard as applied to wind turbine structures. The existing design methods and research regarding seismic risk for wind turbines is then summarized. Finally a preliminary assessment is made based on current guidelines to understand how tower moment demand scales as rated power increases. Potential areas of uncertainty in the application of the current guidelines are summarized
Offshore wind power is increasingly becoming a mainstream energysource, and efforts are underway tow...
Taiwan is located on the Pacific seismic belt, and the soil conditions of Taiwan’s offshore wind far...
Background and Objective: The rapid growth of the wind energy industry has brought the construction ...
Abstract Various sources of risk exist for all civil structures, one of which is seismic risk. As st...
The seismic response of steel monopole wind turbine towers is investigated and their risk is assesse...
The seismic response of steel monopole wind turbine towers is investigated and their risk is assesse...
The spread of the wind energy industry has caused the construction of wind farms in areas prone to h...
textThe design of wind turbines installed in various regions of the world where earthquakes are like...
textThe design of wind turbines installed in various regions of the world where earthquakes are like...
Large scale offshore wind farms are relatively new infrastructures and are being deployed in regions...
Large scale offshore wind farms are relatively new infrastructures and are being deployed in regions...
Abstract: Modern wind turbines have been mainly erected in regions where earthquakes are rare or nor...
Wind power is a substantial resource to assist global efforts on the decarbonization of energy. The ...
Turbines installed in seismically active regions such as the Pacific Rim or the Mediterranean must c...
Taiwan is located on the Pacific seismic belt, and the soil conditions of Taiwan’s offshore wind far...
Offshore wind power is increasingly becoming a mainstream energysource, and efforts are underway tow...
Taiwan is located on the Pacific seismic belt, and the soil conditions of Taiwan’s offshore wind far...
Background and Objective: The rapid growth of the wind energy industry has brought the construction ...
Abstract Various sources of risk exist for all civil structures, one of which is seismic risk. As st...
The seismic response of steel monopole wind turbine towers is investigated and their risk is assesse...
The seismic response of steel monopole wind turbine towers is investigated and their risk is assesse...
The spread of the wind energy industry has caused the construction of wind farms in areas prone to h...
textThe design of wind turbines installed in various regions of the world where earthquakes are like...
textThe design of wind turbines installed in various regions of the world where earthquakes are like...
Large scale offshore wind farms are relatively new infrastructures and are being deployed in regions...
Large scale offshore wind farms are relatively new infrastructures and are being deployed in regions...
Abstract: Modern wind turbines have been mainly erected in regions where earthquakes are rare or nor...
Wind power is a substantial resource to assist global efforts on the decarbonization of energy. The ...
Turbines installed in seismically active regions such as the Pacific Rim or the Mediterranean must c...
Taiwan is located on the Pacific seismic belt, and the soil conditions of Taiwan’s offshore wind far...
Offshore wind power is increasingly becoming a mainstream energysource, and efforts are underway tow...
Taiwan is located on the Pacific seismic belt, and the soil conditions of Taiwan’s offshore wind far...
Background and Objective: The rapid growth of the wind energy industry has brought the construction ...