The reliability of blades is vital to the system reliability of a hydrokinetic turbine. A time-dependent reliability analysis methodology is developed for river-based composite hydrokinetic turbine blades. Coupled with the blade element momentum theory, finite element analysis is used to establish the responses (limit-state functions) for the failure indicator of the Tsai-Hill failure criterion and blade deflections. The stochastic polynomial chaos expansion method is adopted to approximate the limit-state functions. The uncertainties considered include those in river flow velocity and composite material properties. The probabilities of failure for the two failure modes are calculated by means of time-dependent reliability analysis with joi...
A wide variety of factors make reservoir operation a complex and dynamic problem, including multiple...
With the cycle of natural conditions (hydrological or meteorological), a repairable hydrotechnical s...
Damage assessment of composite blades is investigated for hydrokinetic turbine applications in which...
Reliability is an important element in the performance of hydrokinetic turbines. It is also a drivin...
As the most important and expensive component of the hydrokinetic turbine system, the hydrokinetic t...
Tidal stream turbines are used for converting kinetic energy of tidal currents into electricity. The...
In this study, a set of analytical methods was proposed to evaluate the reliability of composite win...
The utilization of kinetic energy from the river is promising as an attractive alternative to other ...
The reliability of a wind turbine blade can be estimated using a response surface technique, the Fir...
The present research work covers the hydrodynamic and the structural designing of a horizontal axis ...
Tidal stream turbines are used for converting kinetic energy of tidal currents into electricity. The...
Reliability-based design of wind turbine blades requires identification of the important failure mod...
Since tidal stream turbines are a new technology there are still no standards or other clear guideli...
New advanced composite blades design methodologies can significantly impact the performance and reli...
Tidal stream turbines are a new technology for extracting kinetic energy from tidal currents. A numb...
A wide variety of factors make reservoir operation a complex and dynamic problem, including multiple...
With the cycle of natural conditions (hydrological or meteorological), a repairable hydrotechnical s...
Damage assessment of composite blades is investigated for hydrokinetic turbine applications in which...
Reliability is an important element in the performance of hydrokinetic turbines. It is also a drivin...
As the most important and expensive component of the hydrokinetic turbine system, the hydrokinetic t...
Tidal stream turbines are used for converting kinetic energy of tidal currents into electricity. The...
In this study, a set of analytical methods was proposed to evaluate the reliability of composite win...
The utilization of kinetic energy from the river is promising as an attractive alternative to other ...
The reliability of a wind turbine blade can be estimated using a response surface technique, the Fir...
The present research work covers the hydrodynamic and the structural designing of a horizontal axis ...
Tidal stream turbines are used for converting kinetic energy of tidal currents into electricity. The...
Reliability-based design of wind turbine blades requires identification of the important failure mod...
Since tidal stream turbines are a new technology there are still no standards or other clear guideli...
New advanced composite blades design methodologies can significantly impact the performance and reli...
Tidal stream turbines are a new technology for extracting kinetic energy from tidal currents. A numb...
A wide variety of factors make reservoir operation a complex and dynamic problem, including multiple...
With the cycle of natural conditions (hydrological or meteorological), a repairable hydrotechnical s...
Damage assessment of composite blades is investigated for hydrokinetic turbine applications in which...