Fundamental CFD Study on the Hydrodynamic Performance of the DARPA SUBOFF Submarine

Kenshiro Takahashi, P. Sahoo
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引用次数: 5

Abstract

This study attempts to examine the potential for computational fluid dynamics (CFD) as an estimation tool of the hydrodynamic performance of submarines. The DARPA SUBOFF model is adopted as a benchmark because of its availability of experimental data for validation. The computational modeling is based on the Reynolds Average Navier Stokes (RANS) equations solved by a finite volume method. Verification and validation of the straight-ahead resistance and the forces and moment exerted on the hull in steady translation and turn with a drift angle were conducted in accordance with the published methodology and procedure. The process to have determined the computational setups is described. Furthermore, the computational results as a function of velocity and drift angle are presented and compared with available experimental data. In conclusion, the present CFD method can be used as an estimation tool for the straight-ahead resistance at various velocities in model scale for multiple configurations.
DARPA subboff潜艇水动力性能基础CFD研究
本研究试图检验计算流体动力学(CFD)作为潜艇水动力性能估计工具的潜力。采用DARPA SUBOFF模型作为基准,因为它具有实验数据验证的可用性。计算模型基于有限体积法求解的Reynolds平均Navier Stokes (RANS)方程。根据已公布的方法和程序,对船体在稳定平动和随漂移角转弯时的直线阻力和力和力矩进行了验证和验证。描述了确定计算设置的过程。此外,给出了计算结果与速度和漂移角的关系,并与已有的实验数据进行了比较。综上所述,本CFD方法可作为模型尺度下多种构型下不同速度下直线阻力的估计工具。
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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