Because
of the loading on the propeller blade, it goes under significant deformation
that may affect the hydrodynamic performance of the propeller. Thus, the blade
deformation of a propeller due to fluid pressure should be analyzed,
considering hydro-elastic analysis. The propeller was made of anisotropic
composite materials, and the geometry of the propeller is for one skew angle.
First, the hydrodynamic pressure loading is obtained by FVM and then the
deformation of the blade due to this pressure was calculated. Next, the
pressure load for deformed propeller is achieved; it is again repeated to
obtain the new deformed propeller. This procedure is repeated to converge the
thrust, torque and efficiency. We present all results of the pressure
distribution, hydrodynamic characteristics, stress and deformation of the
propeller.
Website: http://www.arjonline.org/engineering/american-research-journal-of-mechanical-and-automation-engineering/
Website: http://www.arjonline.org/engineering/american-research-journal-of-mechanical-and-automation-engineering/
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