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An extensive analysis of numerical ship self-propulsion prediction via a coupled BEM/RANS approach

机译:通过耦合BEM / RAN方法对数值船舶自推进预测进行广泛分析

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摘要

The paper deals with the self-propulsion problem, i.e. the solution of the flow around the hull that advances at uniform speed due to the action of its own propeller. A coupled BEM/RANS approach, previously proposed for a simpler case with only rudder and propeller, has been extensively analysed to highlight the strength and the weakness of the method. The proposed analyses consider the influence of different turbulence modelling, the role of the interpolating algorithm for the inclusion of body forces into the RANS domain, a mesh and simulation time step sensitivity study and the influence of the extrapolation procedure for the definition of the effective wake to the propeller in the light of the lightest and the most affordable computational setup for daily accurate calculations. At first, the well-known Kriso Container Ship (KCS) test case is considered. This ship has been widely investigated in the context of different research projects and a large amount of data (both measurements and numerical calculations) is available to validate the solution approach and to highlight the benefits, as well as the weaknesses, of the proposed coupled BEM/RANS approach versus established but computationally demanding calculations based only on RANS simulations. Once the approach has been developed and validated via the KCS test case, calculations have been repeated in the case of completely different ships, in order to evaluate its general applicability and to test the robustness and the reliability of the proposed procedure. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文涉及自推进问题,即船体周围的流动的解决方案由于其自身螺旋桨的动作,以均匀的速度提升。已经广泛地分析了先前为仅具有舵和螺旋桨的更简单的情况提出的耦合BEM / RAN方法,以突出该方法的强度和弱点。所提出的分析考虑了不同湍流建模的影响,内插算法将体力包含到RAN结构域中的内插算法,网格和模拟时间步长度敏感性研究以及外推过程对有效唤醒定义的影响根据最轻和日常准确计算的最轻和最实惠的计算设置的光线。起初,考虑了众所周知的Kriso集装箱船(KCS)测试案例。本船在不同的研究项目的背景下得到了广泛调查,并且可以使用大量数据(两种测量和数值计算)来验证解决方案方法,并突出所提出的耦合BEM的益处以及弱点/ Rans方法与建立但仅基于Rans模拟的计算苛刻的计算。一旦通过KCS测试案件开发和验证了方法,在完全不同的船舶的情况下重复了计算,以评估其一般适用性并测试所提出的程序的鲁棒性和可靠性。 (c)2017 Elsevier Ltd.保留所有权利。

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