Compared to non-cavitating flow, cavitating flow is much complex owing to the numerical difficulties caused by cavity generation and collapse. In the present work, cavitating flow around a two-dimensional Clark-Y hydrofoil is studied numerically with particular emphasis on understanding the cavitation structures and the shedding dynamics. A cavitation model, coupled with the mixture multi-phase approach, and the modified shear stress transport k-ω turbulence model has been developed and implemented in this study to calculate the pressure, velocity, and vapor volume fraction of the hydrofoil. The cavitation model has been implemented in ANSYS FLUENT platform. The hydrofoil has a fixed angle of attack of α = 8° with a Reynolds number of Re =...
The cavitation shedding flow around a 3-D Clark-Y hydrofoil is simulated by using an improved filter...
The unsteady cavitation evolution around the Clark-Y hydrofoil is investigated in this paper, by usi...
The unsteady cavitation evolution around the Clark-Y hydrofoil is investigated in this paper, by usi...
Compared to non-cavitating flow, cavitating flow is much complex owing to the numerical difficulties...
Compared to non-cavitating flow, cavitating flow is much complex owing to the numerical difficulties...
Compared to non-cavitating flow, cavitating flow is much complex owing to the numerical difficulties...
\u3cp\u3eCompared to non-cavitating flow, cavitating flow is much complex owing to the numerical dif...
The objective of this paper is to apply combined experimental and computational modeling to investig...
This study employs an incompressible homogeneous flow framework with a transport equation based cavi...
This paper presents comparisons between two-dimensional (2D) CFD simulations and experimental invest...
The cavitation shedding flow around a 3-D Clark-Y hydrofoil is simulated by using an improved filter...
The cavitation shedding flow around a 3-D Clark-Y hydrofoil is simulated by using an improved filter...
The compressible hydrodynamic approach previously developed for small Mach number non-cavitating fl...
The unsteady cavitation evolution around the Clark-Y hydrofoil is investigated in this paper, by usi...
The cavitation shedding flow around a 3-D Clark-Y hydrofoil is simulated by using an improved filter...
The cavitation shedding flow around a 3-D Clark-Y hydrofoil is simulated by using an improved filter...
The unsteady cavitation evolution around the Clark-Y hydrofoil is investigated in this paper, by usi...
The unsteady cavitation evolution around the Clark-Y hydrofoil is investigated in this paper, by usi...
Compared to non-cavitating flow, cavitating flow is much complex owing to the numerical difficulties...
Compared to non-cavitating flow, cavitating flow is much complex owing to the numerical difficulties...
Compared to non-cavitating flow, cavitating flow is much complex owing to the numerical difficulties...
\u3cp\u3eCompared to non-cavitating flow, cavitating flow is much complex owing to the numerical dif...
The objective of this paper is to apply combined experimental and computational modeling to investig...
This study employs an incompressible homogeneous flow framework with a transport equation based cavi...
This paper presents comparisons between two-dimensional (2D) CFD simulations and experimental invest...
The cavitation shedding flow around a 3-D Clark-Y hydrofoil is simulated by using an improved filter...
The cavitation shedding flow around a 3-D Clark-Y hydrofoil is simulated by using an improved filter...
The compressible hydrodynamic approach previously developed for small Mach number non-cavitating fl...
The unsteady cavitation evolution around the Clark-Y hydrofoil is investigated in this paper, by usi...
The cavitation shedding flow around a 3-D Clark-Y hydrofoil is simulated by using an improved filter...
The cavitation shedding flow around a 3-D Clark-Y hydrofoil is simulated by using an improved filter...
The unsteady cavitation evolution around the Clark-Y hydrofoil is investigated in this paper, by usi...
The unsteady cavitation evolution around the Clark-Y hydrofoil is investigated in this paper, by usi...