An investigation of scale effects on marine propeller under cavitating and non-cavitating conditions

IF 1.4 Q3 ENGINEERING, MARINE
A. Soydan, S. Bal
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引用次数: 5

Abstract

ABSTRACT In this study, scale effects on the hydrodynamic performance of DTMB 4119 propeller have been investigated in uniform flow under non-cavitating and cavitating conditions by a simple practical method based on OpenFOAM. A potential based Lifting Surface Method has also been applied. A verification study of non-cavitating simulations has been carried out by Grid Convergence Index method at one scale ratio. Then the results have been validated with experiments. Schnerr-Sauer cavitation model of OpenFOAM has been used for the phase change between vapor and liquid. Cavitation simulations have been performed as a time-dependent with dynamic mesh while non-cavitating simulations have been carried out as a steady-state with static mesh. Effects of the scale ratio and cavitation simulations have been investigated and a simple fitting procedure on the thrust and torque values based on logarithm of Reynolds number have been applied. Results have also been compared with ITTC corrections.
船用螺旋桨在空化和非空化条件下的尺度效应研究
摘要本研究采用基于OpenFOAM的简单实用方法,研究了DTMB 4119螺旋桨在非空化和空化条件下的均匀流动中尺度效应对其水动力性能的影响。基于电位的提升面法也得到了应用。采用网格收敛指数法在一个尺度比下进行了非空化模拟的验证研究。并通过实验对结果进行了验证。采用OpenFOAM的Schnerr-Sauer空化模型分析气液相变。空化模拟作为一个随时间的动态网格进行,而非空化模拟作为一个稳态的静态网格进行。研究了尺度比和空化模拟的影响,并采用基于雷诺数对数的简单拟合方法拟合了推力和扭矩值。结果也与ITTC校正进行了比较。
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来源期刊
Ship Technology Research
Ship Technology Research ENGINEERING, MARINE-
CiteScore
4.90
自引率
4.50%
发文量
10
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