The Scale Effect Study on the Transient Fluid–Structure Coupling Performance of Composite Propellers

Author:

Huang Zheng,Chen Zhangtao,Zhang Yanbing,Xiong Ying,Duan Kemin

Abstract

In order to predict the fluid–structure coupling performance of a full-scale composite propeller under a wake flow field behind a full ship, a bidirectional transient fluid–structure coupling algorithm was established. The performance includes the transient fluid–structure coupling deformation, structural natural frequency, and unsteady hydrodynamic performance. The results showed that the circumferential non-uniform wake flow field can cause periodic pulsation of the propeller’s hydrodynamic force. The average values of thrust and torque coefficient increase, while the pulsation ratio decreases with the increase in scale. The maximum deformation ratio of fluid–structure coupling is linearly related to the scale ratio. Due to the influence of fluid-added stiffness, the maximum deformation ratio needs to be modified by 3% based on the cantilever plate deflection formula. The first five natural frequencies of dry mode and wet mode decrease with the increasing scale, and the wet natural frequencies of each order decrease by 60~68% compared with dry mode. The fluid–structure coupling hydrodynamic performance still show a periodic pulsation with the phase angle, and its average value increases linearly with the scale ratio, while the pulsation ratio decreases with the power relationship of the scale ratio.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Ocean Engineering,Water Science and Technology,Civil and Structural Engineering

Reference19 articles.

1. Cao, F. (2013). Composite Propellers—Fluid-Structure Interaction. [Master’s Thesis, Shanghai Jiao Tong University].

2. A Comparative Study of One-way and Two-way Fluid-structure Coupling of Copper and Carbon Fiber Propeller;J. Nav. Univ. Eng.,2017

3. Influence of Propeller’s Deformation on Open-water Performance of Marine Propellers and Its Countermeasure;J. Huazhong Univ. Sci. Technol.,2013

4. Numerical Simulation of Hydrodynamic Performance for Composite Marine Propeller Based on Fluid-structure Interaction;Ship Eng.,2015

5. Numerical Analysis of Unsteady Fluid-strucyure Interaction of Composite Marine Propellers;J. Huazhong Univ. Sci. Technol.,2019

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