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Large-scale DES computations of the forward speed diffraction and pitch and heave problems for a surface combatant

机译:表面战斗员前进速度衍射和俯仰和升沉问题的大规模DES计算

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This paper aims at presenting the most resolved solutions to date for the ship forward speed diffraction and pitch and heave problems, and discuss the method that enables these computations. Large-scale DES computations (60-115 million grid points, 276-500 processors) of ship hydrodynamics problems are presented for the DTMB model 5512 surface combatant. The forward speed diffraction problem is studied at Fr = 0.28 with waves of amplitude a = 0.006 and wavelength λ = 1.5, with the ship static allowing the overset assembly to be a pre-processing step. In the pitch and heave problem the ship faces head waves at Fr = 0.41 with waves of amplitude a = 0.006 and wavelength λ = 1 5, with the ship is allowed to pitch and heave, thus requiring dynamic overset grid processing. The code CFDShip-Iowa version 4 and the overset assembly code Suggar were modified to carry out some large scale simulations of free surface ship hydrodynamics. These modifications were focused on reducing the memory requirement and optimizing the per-processor and parallel performance at the implementation and algorithmic levels, plus the addition of a lagged mode for the overset domain connectivity computation. The simulation results show very significant improvements in the local flow and free surface results, but minor in forces and moments when compared with previous URANS computations performed with grids with about three million points.
机译:本文旨在针对船舶前进速度衍射和俯仰和升沉问题提出迄今为止最解决的解决方案,并讨论实现这些计算的方法。针对DTMB 5512型水面战斗机,提出了船舶水动力问题的大规模DES计算(60-1.15亿格点,276-500个处理器)。在Fr = 0.28的情况下研究前进速度衍射问题,振幅为a = 0.006,波长为λ= 1.5,船舶静力允许将过冲组件作为预处理步骤。在俯仰和升沉问题中,船面对Fr = 0.41且波幅为a = 0.006,波长λ= 1 5的头波,允许船俯仰和升沉,因此需要动态过冲栅格处理。修改了CFDShip-Iowa版本4和过剩的装配代码Suggar,以进行自由水面舰船流体动力学的一些大规模仿真。这些修改的重点是在实现和算法级别上减少内存需求并优化每个处理器和并行性能,并为延迟域连接性计算添加了滞后模式。仿真结果表明,局部流动和自由表面结果得到了非常显着的改善,但是与以前使用约300万个点进行的URANS计算相比,力和力矩较小。

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