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An Extended Verification and Validation Study of CFD Simulations for Planing Hulls

机译:飞机船体CFD仿真的扩展验证与确认研究

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摘要

In the context of marine application of computational fluid dynamic (CFD), it is well known that the numerical simulations of planing craft are significantly less reliable than that of displacement ships. For this reason, it is important to perform a comprehensive approach to the verification and validation (V&V) methodology and procedures for simulating CFD planing craft. In the first part of this paper, an assessment of the accuracy and effectiveness of different simulation setups and techniques for planing craft is performed. In the second part, the results of the V&V study are reported for three different hull models at four Froude numbers (Fr). The Unsteady Reynolds-Averaged Navier-Stokes code results were validated using benchmark experimental data obtained for three hull models characterized by systematic variation of the length to beam ratio. Grid independence, iteration, and time-step convergence analysis for response variables (resistance coefficients, wetted surfaces, and dynamic trim angles) were conducted using the main error and uncertainty estimation methods available in the literature. The same procedures were followed for the profiles of the wave patterns. The results showed that there was improved reliability of the numerical simulation of the planing craft in terms of the errors and uncertainties, related to the predictions of resistance, running attitude, and wave pattern. The results of the V&V study highlighted the fact that modeling of the planing craft is a critical point to improve the reliability of the numerical simulation.
机译:在海洋应用计算流体动力学(CFD)的背景下,众所周知,滑行船的数值模拟远不如排水舰的数值模拟可靠。因此,对CFD刨削工艺进行仿真的验证和确认(V&V)方法和程序必须采用全面的方法。在本文的第一部分中,对滑行工艺的不同仿真设置和技术的准确性和有效性进行了评估。在第二部分中,以三个弗洛德数(Fr)报道了三个不同船体模型的V&V研究结果。使用从三个船体模型获得的基准实验数据验证了非稳态雷诺平均Navier-Stokes代码结果,该模型的特征是长度与横梁比的系统变化。使用文献中可用的主要误差和不确定性估算方法对响应变量(电阻系数,湿润表面和动态纵倾角)进行网格独立性,迭代和时间步收敛分析。波形图的轮廓遵循相同的步骤。结果表明,就误差和不确定性而言,刨床数值模拟的可靠性得到了提高,这与阻力,运行姿态和波型的预测有关。 V&V研究的结果强调了这样一个事实,即刨削工艺的建模是提高数值模拟可靠性的关键点。

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