Javascript must be enabled to continue!
Numerical investigation of the rake angle effect on the hydrodynamic performance of propeller in a uniform and nonuniform flow
View through CrossRef
Marine propeller always operates in the wake of a vehicle (ship, torpedo, submarine) but (due to the high computational cost of simulating vehicle and propeller simultaneously) to investigate the propeller geometric parameters, simulations are usually performed in open-water conditions. In this article, using the computational fluid dynamics method with the control volume approach, the effect of the rake angle on the propeller performance and formation of cavitation in the uniform flow (open water) and the nonuniform flow (wake flow) was investigated. In the nonuniform condition, the array of plates was used to simulate wake at upstream propeller. For uniform flow, steady solution scheme was adopted and for nonuniform flow unsteady solution scheme was adopted, and a moving mesh zone was generated around the propeller. To simulate cavitation a multiphase mixture flow, the Reynolds-averaged Navier–Stokes method was used and modeled by Schnerr Sauer's cavitation model. First, the E779a propeller model for numerical validation in the uniform flow and nonuniform flow was investigated. Numerical results were compared with the experimental result, and there was a good agreement between volume of the cavity, thrust, and torque coefficients. To study the effect of rake angle on the performance of B-series propellers, four models with different rake angles were modeled, and simulation was investigated behind the wake. The results of thrust, torque coefficients, and cavitation volume according to the flow parameters and cavitation number were presented as graphs. The results reveals that in the uniform flow, the rake angle has no significant effect on the propeller performance, but behind the wake flow, increase of rake causes to reduce the force applied to the propeller blades, cavitation volume, and pressure fluctuations on the propeller.
Title: Numerical investigation of the rake angle effect on the hydrodynamic performance of propeller in a uniform and nonuniform flow
Description:
Marine propeller always operates in the wake of a vehicle (ship, torpedo, submarine) but (due to the high computational cost of simulating vehicle and propeller simultaneously) to investigate the propeller geometric parameters, simulations are usually performed in open-water conditions.
In this article, using the computational fluid dynamics method with the control volume approach, the effect of the rake angle on the propeller performance and formation of cavitation in the uniform flow (open water) and the nonuniform flow (wake flow) was investigated.
In the nonuniform condition, the array of plates was used to simulate wake at upstream propeller.
For uniform flow, steady solution scheme was adopted and for nonuniform flow unsteady solution scheme was adopted, and a moving mesh zone was generated around the propeller.
To simulate cavitation a multiphase mixture flow, the Reynolds-averaged Navier–Stokes method was used and modeled by Schnerr Sauer's cavitation model.
First, the E779a propeller model for numerical validation in the uniform flow and nonuniform flow was investigated.
Numerical results were compared with the experimental result, and there was a good agreement between volume of the cavity, thrust, and torque coefficients.
To study the effect of rake angle on the performance of B-series propellers, four models with different rake angles were modeled, and simulation was investigated behind the wake.
The results of thrust, torque coefficients, and cavitation volume according to the flow parameters and cavitation number were presented as graphs.
The results reveals that in the uniform flow, the rake angle has no significant effect on the propeller performance, but behind the wake flow, increase of rake causes to reduce the force applied to the propeller blades, cavitation volume, and pressure fluctuations on the propeller.
Related Results
Variations Rake Angle Propeller B – Series Towards Performance and Cavitation with CFD Method
Variations Rake Angle Propeller B – Series Towards Performance and Cavitation with CFD Method
Fuel consumption is most widely used in ship propulsion system, therefore, in ship propulsion system must be considered and designed as efficiently as possible. Propeller is one of...
Характеристики повітряного гвинта квадрокоптера
Характеристики повітряного гвинта квадрокоптера
The subject of the study is the characteristics of the quadrocopter propeller. The object of the study is a two-blade propeller of a quadrocopter. The aim of this study was to eval...
CFD Analysis on Propeller at Varying Propeller Disc Angle and Advance Ratio
CFD Analysis on Propeller at Varying Propeller Disc Angle and Advance Ratio
The purpose of this study is to see the feasibility of using Computational Fluid Dynamic (CFD) analysis over wind tunnel testing for propeller performance measurement. Computationa...
Numerical and Experimental Investigations into the Characteristics of Wageningen B4-70 Series of Propeller with Boss Cap Fins
Numerical and Experimental Investigations into the Characteristics of Wageningen B4-70 Series of Propeller with Boss Cap Fins
Applying propeller boss cap fins (PBCF) in open B-series has been studied. PBCF is able to decrease the wake effect behind the propeller which can influence the propeller’s thrust ...
Comparative Analysis of Conventional and Toroidal Propeller through CFD Methods
Comparative Analysis of Conventional and Toroidal Propeller through CFD Methods
Toroidal propeller comprising circular blades is gaining significant attention due to higher efficiency; lower noise levels and other advantages compared to the current propeller m...
Deriving Sensitivities of Distributed Propeller Propulsion in Overwing Configuration by using DoE in CFD Simulations
Deriving Sensitivities of Distributed Propeller Propulsion in Overwing Configuration by using DoE in CFD Simulations
In this publication the interaction of propeller and wing of a short haul aircraft concept with distributed propeller propulsion in an over-wing configuration at cruise conditions ...
Propeller Aerodynamic Design and Optimization
Propeller Aerodynamic Design and Optimization
This research endeavors to illuminate the path toward efficient and optimized propeller design by delving into the realm of aerodynamics. Propellers, as vital mechanical marvels, c...
Resistance and propulsion performance of a twin skeg ship with different rudder angle
Resistance and propulsion performance of a twin skeg ship with different rudder angle
Abstract
Rudder angle will change the flow field, resulting in different loads and interactions on the hull-propeller-rudder, which will affect the resistance and...

