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Evaluation of added resistance in regular incident waves by computational fluid dynamics motion simulation using an overlapping grid system 总被引:2,自引:0,他引:2
A computational fluid dynamics simulation method called WISDAM-X was developed to evaluate the added resistance of ships in waves. The Reynolds-averaged Navier–Stokes (RANS) equation was solved by the finite-volume method and a MAC-type solution algorithm. An overlapping grid system was employed to implement rigorous wave generation, the interactions of ships with incident waves, and the resultant ship motions. The motion of the ship is simultaneously solved by combining the solution of the motion of the ship with the solution of the flow about the ship. The free surface is captured by treatment by the density-function method. The accuracy of WISDAM-X is examined by a comparison with experimental data from a container carrier hull form, and shows a fairly good agreement with respect to ship motion and added resistance. Simulations were also conducted for a bow-form series of a medium-speed tanker to examine the effectiveness of the WISDAM-X method as a design tool for a hull form with a smaller resistance in waves. It was confirmed that the WISDAM-X method can evaluate the added resistance with sufficient relative accuracy and can be used as a design tool for ships. 相似文献
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H.T. LIN 《西南交通大学学报(英文版)》2012,20(2):70-75
Vortex motion in superconductors of higb-Tc superconducting maglev system is studied by a computational simulation.The vortex system is treated in a similar fashion,as a system where defects arc arrang... 相似文献
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大断面黄土隧道斜井进入正洞的挑顶施工技术 总被引:2,自引:0,他引:2
通过对郑西铁路客运专线潼洛川和高桥两座大断面湿陷性黄土隧道三座斜井进入正洞的施工,从安全、进度和经济方面考虑,优选出合理的斜井挑顶施工方案。实施的结果证明,所选用方案工程结构安全,缩短了施工时间,节约了施工费用。 相似文献
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Makoto Sueyoshi Masashi Kashiwagi Shigeru Naito 《Journal of Marine Science and Technology》2008,13(2):85-94
The moving particle semi-implicit (MPS) method was applied to compute nonlinear motions of a floating body influenced by the
water on deck. To compute the motions of a rigid body, the fluid pressure at the position of each particle on the body surface
was directly integrated in space and the equations of translational and rotational motions were integrated in time to determine
the correct position of the rigid-body surface at each time step of the time-domain calculation. The performance of this method
was validated through a comparison with measured results in an experiment that was newly conducted using a model of a box-shaped
floating body with a small freeboard. Although the overall agreement was good, some discrepancies were observed for a shorter
wave period, especially for the drift motion in sway. The effect of numerical resolution on the results was checked by changing
the number of particles. With a higher number of particles, no obvious improvement was seen in the global body motions, but
the resolution of the local free-surface profile, including the water on deck, was improved. 相似文献
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针对港池内船舶装卸作业的安全与稳定问题,采用基于势流理论的面元法分析程序AQWA,分析得到船舶与码头结构耦合作用下的14 000 TEU集装箱船动力响应幅值算子。在此基础上,进一步采用码头泊位前的真实波浪条件,得到14 000 TEU集装箱船在设计系缆方式下的船舶运动量响应和缆绳受力响应。结果表明,14 000 TEU集装箱船横摇周期较大,与港池内存在的中长期波(12~18 s)不相匹配,不易引起船舶较大幅度的动力响应;计算分析结果与系泊物理模型试验所得到的结果相吻合,说明所采用的计算原理与分析模型较为可靠,具有较强的工程实际应用价值。 相似文献