A computational methodology for the hydrodynamic analysis of horizontal axis marine current turbines is presented. The approach is based on a boundary integral equation method for inviscid flows originally developed for marine propellers and adapted here to describe the flow features that characterize hydrokinetic turbines. For this purpose, semi-analytical trailing wake and viscous flow correction models are introduced. A validation study is performed by comparing hydrodynamic performance predictions with two experimental test cases and with results from other numerical models in the literature. The capability of the proposed methodology to correctly describe turbine thrust and power over a wide range of operating conditions is discussed. ...
To fully understand the performance of tidal stream turbines for the development of ocean renewable ...
International audienceThis paper presents numerical computations of three bladed horizontal axis mar...
Horizontal axis marine current turbine is a viable device which can harness kinetic energy from ocea...
Results of a computational study to analyse the hydrodynamic performance of horizontal-axis marine c...
textThe performance of a horizontal axis marine current turbine is predicted by three numerical meth...
textThe performance of a horizontal axis marine current turbine is predicted by three numerical meth...
A computational hydrodynamics method was formulated and implemented for horizontal axis tidal turbin...
Thesis (Ph.D.)--University of Washington, 2014A hierarchy of numerical models, Single Rotating Refer...
Thesis (Ph.D.)--University of Washington, 2014A hierarchy of numerical models, Single Rotating Refer...
This paper describes the development of a computational fluid dynamics (CFD) methodology to simulate...
The development of a blade element momentum (BEM) model for the hydrodynamic design of marine curren...
Various global studies have shown that marine currents have large potential as a predictable sustain...
The conversion of the kinetic energy presented by ocean or marine currents offers an exciting propos...
Horizontal axis marine current turbine is a viable device which can harness kinetic energy from ocea...
To fully understand the performance of tidal stream turbines for the development of ocean renewable ...
To fully understand the performance of tidal stream turbines for the development of ocean renewable ...
International audienceThis paper presents numerical computations of three bladed horizontal axis mar...
Horizontal axis marine current turbine is a viable device which can harness kinetic energy from ocea...
Results of a computational study to analyse the hydrodynamic performance of horizontal-axis marine c...
textThe performance of a horizontal axis marine current turbine is predicted by three numerical meth...
textThe performance of a horizontal axis marine current turbine is predicted by three numerical meth...
A computational hydrodynamics method was formulated and implemented for horizontal axis tidal turbin...
Thesis (Ph.D.)--University of Washington, 2014A hierarchy of numerical models, Single Rotating Refer...
Thesis (Ph.D.)--University of Washington, 2014A hierarchy of numerical models, Single Rotating Refer...
This paper describes the development of a computational fluid dynamics (CFD) methodology to simulate...
The development of a blade element momentum (BEM) model for the hydrodynamic design of marine curren...
Various global studies have shown that marine currents have large potential as a predictable sustain...
The conversion of the kinetic energy presented by ocean or marine currents offers an exciting propos...
Horizontal axis marine current turbine is a viable device which can harness kinetic energy from ocea...
To fully understand the performance of tidal stream turbines for the development of ocean renewable ...
To fully understand the performance of tidal stream turbines for the development of ocean renewable ...
International audienceThis paper presents numerical computations of three bladed horizontal axis mar...
Horizontal axis marine current turbine is a viable device which can harness kinetic energy from ocea...