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PROPELLER HYDRODYNAMIC CHARACTERISTICS IN OBLIQUE FLOW BY UNSTEADY RANSE SOLVER

机译:不稳常工求解器的斜流螺旋桨流体动力学特性

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Propellers may encounter oblique flow during operation in off-design conditions. Study of this issue is important from the design and ship performance points of view. On the other hand, a propeller operating in oblique flow may sometimes result in a better propulsion efficiency. The main goal of the present study is to provide an insight on the propeller characteristics in the oblique flow condition. In this research, the performance of the DTMB 4419 propeller is studied by the numerical method based on solving Reynolds Averaged Navier-Stokes (RANS) equations in several inflow angles. The sliding mesh approach is used to model the rotary motion of the propeller. Initially, the numerical method is verified by grid and time step dependency analysis at various inflow angles. Additionally, computed results at zero inflow angle are compared with the available experimental data and good agreement is achieved. Finally, the forces and moments acting on the propeller are obtained for 0° to 30° inflow angles. It is concluded that the inflow angle up to 10° has no significant influence on the thrust and torque coefficients as well as the propeller efficiency. However, at high angles up to 30°, the thrust and torque coefficients increase as the inflow angle increases, which may result in a significant improvement of propeller efficiency.
机译:螺旋桨在非设计条件下操作期间可能会遇到倾斜流。从设计和船舶绩效观点来看,这个问题的研究很重要。另一方面,倾斜流动的螺旋桨有时可能导致更好的推进效率。本研究的主要目的是提供对倾斜流动条件的螺旋桨特性的洞察。在该研究中,通过基于求解雷诺(RANS)在几个流入角度的求解雷诺(RANS)方程的数值方法研究了DTMB 4419螺旋桨的性能。滑动网格方法用于模拟螺旋桨的旋转运动。最初,通过网格和时间步长分析在各种流入角度验证数值方法。另外,将计算的零流入角度的结果与可用的实验数据进行比较,并且实现了良好的协议。最后,获得了在螺旋桨上的力和力矩得到0°至30°的流入角。结论是,高达10°的流入角对推力和扭矩系数以及螺旋桨效率没有显着影响。然而,在高达30°的高角度下,随着流入角度的增加,推力和扭矩系数增加,这可能导致螺旋桨效率显着提高。

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