Reliability is an important element in the performance of hydrokinetic turbines. It is also a driving factor of the system lifetime cost. In this paper, we perform time-dependent reliability analysis for the blades of a river-based horizontal-axis hydrokinetic turbine. Based on the stochastic representation of the monthly river velocity and material strength, a limit-state function is established with the classical blade element momentum method. In the limit-state function, a failure is defined as the event when the flapwise bending moment exceeds the allowable moment that corresponds to the ultimate strength of the material. The upcrossing rate method is employed to calculate the time-dependent reliability of the hydrokinetic turbine blade...
In this study, a set of analytical methods was proposed to evaluate the reliability of composite win...
This present paper deals with the choice of stochastic expansion models for load processes in struct...
The role of the level of reliability of meeting a desired hydropower system's firm energy yield and ...
The reliability of blades is vital to the system reliability of a hydrokinetic turbine. A time-depen...
Tidal stream turbines are used for converting kinetic energy of tidal currents into electricity. The...
Tidal stream turbines are used for converting kinetic energy of tidal currents into electricity. The...
As the most important and expensive component of the hydrokinetic turbine system, the hydrokinetic t...
Tidal stream turbines are a new technology for extracting kinetic energy from tidal currents. A numb...
Since tidal stream turbines are a new technology there are still no standards or other clear guideli...
The present research work covers the hydrodynamic and the structural designing of a horizontal axis ...
Hydrokinetic energy, a relatively new kind of renewable energy, can be generated from flowing water ...
Reliability-based design of wind turbine blades requires identification of the important failure mod...
The reliability of a wind turbine blade can be estimated using a response surface technique, the Fir...
Hydrokinetic energy is a relatively new concept in the field of renewable energy. The rotor of the t...
Developing reliable tidal-energy turbines of a large size and capacity links to preservation of the ...
In this study, a set of analytical methods was proposed to evaluate the reliability of composite win...
This present paper deals with the choice of stochastic expansion models for load processes in struct...
The role of the level of reliability of meeting a desired hydropower system's firm energy yield and ...
The reliability of blades is vital to the system reliability of a hydrokinetic turbine. A time-depen...
Tidal stream turbines are used for converting kinetic energy of tidal currents into electricity. The...
Tidal stream turbines are used for converting kinetic energy of tidal currents into electricity. The...
As the most important and expensive component of the hydrokinetic turbine system, the hydrokinetic t...
Tidal stream turbines are a new technology for extracting kinetic energy from tidal currents. A numb...
Since tidal stream turbines are a new technology there are still no standards or other clear guideli...
The present research work covers the hydrodynamic and the structural designing of a horizontal axis ...
Hydrokinetic energy, a relatively new kind of renewable energy, can be generated from flowing water ...
Reliability-based design of wind turbine blades requires identification of the important failure mod...
The reliability of a wind turbine blade can be estimated using a response surface technique, the Fir...
Hydrokinetic energy is a relatively new concept in the field of renewable energy. The rotor of the t...
Developing reliable tidal-energy turbines of a large size and capacity links to preservation of the ...
In this study, a set of analytical methods was proposed to evaluate the reliability of composite win...
This present paper deals with the choice of stochastic expansion models for load processes in struct...
The role of the level of reliability of meeting a desired hydropower system's firm energy yield and ...