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CFD-Based Optimization for Minimal Power and Wake Field Quality

机译:基于CFD的优化,用于最小功率和唤醒场质量

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This paper discusses a procedure to optimize ship hull forms for minimum required power and best wake field quality, based on CFD computations of the viscous flow and resistance. A flexible and effective definition of parametric hull form variations is used, based on interpolation between basis hull forms. The RANS solver parnassos is used, and the computations are done in parallel on hundreds of processors, permitting short turnaround times. Care is taken that the computed trends are not influenced by numerical disturbances coming from grid dependence, insufficient convergence or automatic grid generating procedures. Clear Pareto fronts, trends in the solutions and scale effects on those trends are obtained in a systematic variation study for a tanker afterbody. It appears that a significant reduction of both the resistance and the estimated required power can be obtained. The computed improvements in the resistance and in the nominal wake field show excellent agreement with measurements.
机译:本文讨论了一种过程,以基于粘性流动和阻力的CFD计算,优化船舶船体形式的最小所需功率和最佳唤醒场质量。基于基于船体形式之间的插值,使用了参数壳体变化的灵活有效的定义。使用RAN Solver Parnassos,并且计算在数百个处理器上并行完成,允许短暂的周转时间。仔细注意到计算的趋势不受来自网格依赖性,收敛不足或自动网格产生程序的数值扰动的影响。清除帕累托前线,在体内变压器的系统变化研究中获得了对这些趋势的解决方案和规模影响的趋势。似乎可以获得电阻和估计所需功率的显着降低。电阻和标称唤醒场中的计算改进显示了与测量结果非常一致。

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