Experimental and numerical analysis of Hydrodynamic Characteristics of a surface piercing propeller mounted on high-speed craft

Publish Year: 1400
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_IJMTE-15-1_007

تاریخ نمایه سازی: 23 بهمن 1400

Abstract:

Surface piercing propellers are widely employed in high-speed crafts due to having many favorable features. These propellers operate at both submerged and semi-submerged states. In submerged state, to enhance the propeller hydrodynamic performance, the blades are usually manipulated through artificial ventilation by adding the air duct which is located at the propeller suction side. In current study, a ۵-blade propeller proficiency has been studied under different operational conditions of ۱۶ m catamaran vessel experimentally, the sea trial, and numerically using Computational Fluid Dynamics (CFD). The propeller behavior has been investigated under four sea trials while the propeller torque has been sampled at different engine states and vessel speed. The numerical study through CFD has been done to analyze the propeller behavior under different conditions, submerged and semi-submerged states. The numerical results have been validated by experimental observations. The propeller proficiency has been studied in two vessel motion stages which are pre-planing and post-planing. The results depict that the maximum torque is observed in submerged state at the last step of pre-planing mode while the engine speed is ۲۳۰۰ rpm. The propeller torque is reduced ۱۰ to ۱۶% at ۲۵۰۰ rpm in post-planning stage. In submerged state, the propeller proficiency is negligible at pre-planing mode.

Authors

Mojtaba Pakian Bushehri

Department of Mechanical Engineering, Persian Gulf University

Mohammad Reza Golbahar Haghighi

Department of Mechanical Engineering, Persian Gulf University

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