Current Capabilities of DES and LES for Submarines at Straight Course

船体 潜艇 分离涡模拟 海洋工程 雷诺平均Navier-Stokes方程 计算机科学 方向舵 流量(数学) 螺旋桨 推进器 雷诺数 旋转对称性 航空航天工程 计算流体力学 机械 工程类 物理 湍流
作者
Niklas Alin,Rickard Bensow,Christer Fureby,Tobias Huuva,Urban Svennberg
出处
期刊:Journal of Ship Research [Society of Naval Architects and Marine Engineers]
卷期号:54 (03): 184-196 被引量:73
标识
DOI:10.5957/jsr.2010.54.3.184
摘要

The flow around an axisymmetric hull, with and without appendages, is investigated using large eddy simulation (LES), detached eddy simulation (DES), and Reynolds averaged Navier Stokes (RANS) models. The main objectives of the study is to investigate the effect of the different simulation methods and to demonstrate the feasibility of using DES and LES on relatively coarse grids for submarine flows, but also to discuss some generic features of submarine hydrodynamics. For this purpose the DARPA Suboff configurations AFF1 (bare hull) and AFF8 (fully appended model) are used. The AFF1 case is interesting because it is highly demanding, in particular for LES and DES, due to the long midship section on which the boundary layer is developed. The AFF8 case represents the complex flow around a fully appended submarine with sail and aft rudders. An actuator disc model is used to emulate some of the effects of the propulsor for one of the AFF8 cases studied. Results for the AFF8 model are thus presented for both "towed" and "self-propelled" conditions, where as for the bare hull, only a "towed" condition is considered. For the AFF1 and the "towed" AFF8 cases experimental data are available for comparison, and the results from both configurations show that all methods give good results for first-order statistical moments although LES gives a better representation of structures and second-order statistical moments in the complex flow in the AFF8 case.
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