Numerical Modeling of Podded Propulsors and Rudder Cavitation

S. Kinnas, S. Natarajan, Hanseong Lee
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引用次数: 4

Abstract

Various computational methods that have been developed in the past are combined in this paper to predict: (a) the performance of podded propulsors, and (b) the sheet cavitation on a rudder which is subject to the flow of an upstream propeller. An 3-D Euler-based finite volume method (GBFLOW-3D) is used to predict the flow around a pod with a strut, and is coupled with MPUF-3A, a lifting surface vortex-lattice method, which is applied to the propeller(s) of the pod. The propellers are modeled via body forces in GB FLOW. The 3-D effective wake for each of the propellers of the pod is evaluated by subtracting from the total inflow (determined in GBFLOW-3D) the velocities induced by the same propeller ( determined in MPUF-3A). Several iterations between GBFLOW-3D and MPUF-3A are performed until convergence is reached. The three-way interaction among the pod/strut and the two propellers is fully accounted for at the end of the iterative process. The inflow to the rudder is determined by applying GBFLOW-3DIMPUF-3A on the propeller upstream. Once the propeller-induced flow to the rudder is evaluated, PROPCAV (a potential-based boundary element method), is used to predict the cavitation patterns on the rudder. The effects of the hull are considered by using the image model in PROPCAV. Several validation studies with other methods, some analytical solutions, and experiments are presented.
吊舱式推进器与舵空化的数值模拟
本文结合过去发展的各种计算方法来预测:(a)吊舱式推进器的性能;(b)受上游螺旋桨流动影响的舵片空化。将基于三维欧拉有限体积法(GBFLOW-3D)与升力面涡点阵法(MPUF-3A)相结合,应用于带支板吊舱螺旋桨的流动预测。在GB FLOW中采用体力对螺旋桨进行建模。吊舱每个螺旋桨的三维有效尾迹是通过从总流入(在GBFLOW-3D中确定)中减去由同一螺旋桨引起的速度(在MPUF-3A中确定)来评估的。在GBFLOW-3D和MPUF-3A之间进行多次迭代,直到收敛。在迭代过程结束时,充分考虑了吊舱/支杆与两个螺旋桨之间的三方相互作用。通过在上游螺旋桨上施加GBFLOW-3DIMPUF-3A来确定方向舵的流入。一旦评估了螺旋桨诱导的方向舵流,利用PROPCAV(一种基于势的边界元方法)来预测方向舵上的空化模式。在PROPCAV中,利用图像模型考虑了船体的影响。本文给出了一些其他方法的验证研究、一些解析解和实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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