首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment >The hydrodynamics of ship-like sections in heave, sway, and roll motions predicted using an unsteady Reynolds-averaged Navier–Stokes method
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The hydrodynamics of ship-like sections in heave, sway, and roll motions predicted using an unsteady Reynolds-averaged Navier–Stokes method

机译:使用非稳态雷诺平均Navier–Stokes方法预测的升沉,摇摆和侧倾运动中船状截面的流体力学

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摘要

The application of strip theory for predicting ship seakeeping response in waves relies on sectional added mass and viscous damping. A Reynolds averaged Navier–Stokes (RANS) approach is adopted to obtain two-dimensional hydrodynamic coefficients that include viscous and rotational flow effects as well as free surface wave generation. Calculations are made for circular and rectangular sections of cylinders swaying, heaving, and rolling in the presence of a free surface, for a range of frequencies. The predicted hydrodynamic coefficients are compared with available experimental and numerical results. The method is successfully validated for sway of a submerged circular cylinder. Good agreement is obtained for sway and heave of a rectangular cylinder at a free surface. For roll, the results are highly sensitive to the mesh applied due to the vortex shedding that occurs at the sharp corners, even at relatively low roll amplitudes. The appropriate density of mesh influences the convection of the vortex, the production of vorticity, and the position of the vortex core. These all have a large impact on fluid damping. A hybrid-based zonal mesh generation approach is proposed to maintain a compromise between necessary mesh refinement and the overall number of cells. Using this technique and a small fixed time step leads to improved predictions of the roll hydrodynamic coefficients, particularly for fluid damping.
机译:条形理论在预测船舶在波浪中的航海响应中的应用依赖于截面附加质量和粘性阻尼。采用雷诺平均Navier-Stokes(RANS)方法获得二维流体动力系数,其中包括粘性和旋转流动效应以及自由表面波的产生。对于存在一定频率范围的圆柱,在有自由表面的情况下,对圆柱体的圆形和矩形截面进行摇摆,升沉和滚动计算。将预测的水动力系数与可用的实验和数值结果进行比较。该方法已成功验证了水下圆柱体的摆动。矩形圆柱体在自由表面上的摆动和升沉获得了良好的一致性。对于滚动,即使在相对较低的滚动幅度下,由于在锐角处发生的涡旋脱落,结果对所应用的网格也非常敏感。适当的网格密度会影响涡流的对流,涡流的产生以及涡流芯的位置。这些都对流体阻尼有很大的影响。提出了一种基于混合的区域网格生成方法,以保持必要的网格细化和单元总数之间的折衷。使用此技术和较小的固定时间步长可以提高对轧辊流体动力系数的预测,尤其是对于流体阻尼而言。

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