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Numerical Simulation of Marine Propeller Hydrodynamic Performance in Uniform Inflow with Different Turbulence Models

机译:用不同湍流模型均匀流入中船用螺旋桨流体动力学性能的数值模拟

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In general, marine propellers have complicated geometries and as a consequence complicated flow around propeller. The aim of this work is to find an appropriate method and assess the turbulence model to approach the open water hydrodynamic characteristics of the marine propellers. In this work, a numerical modeling using a finite volume commercial code (FVM) for different turbulence models has been applied on the well known conventional screw propeller DTRC P4119. The 3-D solid model of P4119 is established using pro/E software and for the mesh generation ANSYS-ICEM has been used. Steady Reynolds-Averaged Navier Stokes (RANS) simulations are accomplished using FLUENT software with unstructured mesh in the rotating computational domain and structured mesh for the rest of the domain. The open water performance coefficients, thrust (K_T), torque (K_Q) and efficiency (η) have been calculated and compared with available experimental data to assess the applicability of different turbulence models for the open water study of propeller. This paper shows that, the accuracy of the CFD based on RANS equations is dependent on the used turbulence model and the RNG K-epsilon turbulence model yields to provide the most accurate results. Also, all the turbulence models via FLUENT software behave the same behavior for the total span of the advance coefficient (J) with two types of result accuracy. All the turbulence models shows high accuracy at low advance coefficient and this accuracy decreases but with an acceptable error till it decreases suddenly at the maximum advance coefficient.
机译:通常,船舶螺旋桨具有复杂的几何形状,并且由于螺旋桨周围的复杂流动。这项工作的目的是找到合适的方法,并评估湍流模型,以接近船舶螺旋桨的开放水流体动力学特性。在这项工作中,在众所周知的传统螺旋桨DTRC P4119上施加了使用用于不同湍流模型的有限卷商业代码(FVM)的数值建模。 P4119的3-D实体模型是使用Pro / E软件建立的,并且用于网格生成ANSYS-ICEM。使用流畅的软件在旋转计算域中的旋转计算域中的非结构化网格和域的其余部分来完成稳定的reynolds-vier斯托克斯(RANS)模拟。已经计算了开放水能系数,推力(K_T),扭矩(K_Q)和效率(η),并与可用的实验数据进行比较,以评估不同湍流模型对螺旋桨开放水研究的适用性。本文表明,基于RAN方程的CFD的准确性取决于所使用的湍流模型和RNG K-EPSILON湍流模型的产量为提供最准确的结果。此外,通过流畅软件的所有湍流模型都表现出具有两种类型的结果精度的提前系数(J)的总跨度的相同行为。所有湍流模型在低预先系数下显示出高精度,并且该精度降低但具有可接受的误差,直到它在最大提前系数突然下降。

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