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首页> 外文期刊>Journal of marine science and technology >EFD and CFD for KCS heaving and pitching in regular head waves
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EFD and CFD for KCS heaving and pitching in regular head waves

机译:EFD和CFD用于常规头波的KCS升沉和俯仰

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摘要

The KCS container ship was investigated in calm water and regular head seas by means of EFD and CFD. The experimental study was conducted in FORCE Technology's towing tank in Denmark, and the CFD study was conducted using the URANS codes CFDSHIP-IOWA and Star-CCM+ plus the potential theory code AEGIR. Three speeds were covered and the wave conditions were chosen in order to study the ship's response in waves under resonance and maximum exciting conditions. In the experiment, the heave and pitch motions and the resistance were measured together with wave elevation of the incoming wave. The model test was designed and conducted in order to enable UA assessment of the measured data. The results show that the ship responds strongly when the resonance and maximum exciting conditions are met. With respect to experimental uncertainty, the level for calm water is comparable to PMM uncertainties for maneuvering testing while the level is higher in waves. Concerning the CFD results, the computation shows a very complex and time-varying flow pattern. For the integral quantities, a comparison between EFD and CFD shows that the computed motions and resistance in calm water is in fair agreement with the measurement. In waves, the motions are still in fair agreement with measured data, but larger differences are observed for the resistance. The mean resistance is reasonable, but the first order amplitude of the resistance time history is underpredicted by CFD. Finally, it seems that the URANS codes are in closer agreement with the measurements compared to the potential theory.
机译:通过EFD和CFD对KCS集装箱船在平静水域和常规海面进行了调查。实验研究是在丹麦FORCE Technology的拖船上进行的,而CFD研究是使用URANS代码CFDSHIP-IOWA和Star-CCM +加上潜在的理论代码AEGIR进行的。涵盖了三种速度并选择了波浪条件,以便研究在共振和最大激励条件下船舶在波浪中的响应。在实验中,测量了升沉和俯仰运动以及阻力以及入射波的波高。设计并进行了模型测试,以便能够对测量数据进行UA评估。结果表明,在满足共振和最大激励条件的情况下,船舶的响应强烈。关于实验不确定性,平静水位与操纵测试中的PMM不确定度相当,而波浪中的不确定度更高。关于CFD结果,计算显示出非常复杂且随时间变化的流动模式。对于积分量,EFD和CFD之间的比较表明,在平静水中计算出的运动和阻力与测量值完全吻合。在波浪中,运动仍与实测数据完全吻合,但观察到阻力存在较大差异。平均电阻是合理的,但是CFD预测电阻时间历史的一阶幅度。最后,与潜在理论相比,URANS编码似乎与测量值更加一致。

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