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首页> 外文期刊>The Transactions of the Royal Institution of Naval Architects >URANS PREDICTION OF THE SLAMMING COEFFICIENTS FOR PERFORATED PLATES DURING WATER ENTRY
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URANS PREDICTION OF THE SLAMMING COEFFICIENTS FOR PERFORATED PLATES DURING WATER ENTRY

机译:URANS预测渗水过程中渗透板的结垢系数

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The slamming coefficients for perforated plates of various perforation ratios and layout configurations were predicted using Unsteady Reynolds-Averaged Navier-Stokes (URANS) solver STAR-CCM+. The numerical model was validated by comparing with experimental measurements of slamming coefficient for a circular cylinder. The slamming coefficients and free surface profiles of perforated plates were then predicted at full-scale. It was found the air compressibility plays an important role by studying flat plate water entry phenomena. For perforated plates with small gap length/width ratios, the ability of the trapped air to evacuate through the space between the bottom of the plate and free surface is similar. For perforated plates with different gap number at a fixed perforation ratio, the slamming coefficient is increased with the increase in gap length/width ratio. However, a further increase in length/width ratio may impose a negative impact on the escape of trapped air due to the increase of gap number.
机译:使用非稳态雷诺平均Navier-Stokes(URANS)求解器STAR-CCM +可以预测各种穿孔率和布局配置的穿孔板的砰砰系数。通过与气缸的砰击系数的实验测量值进行比较来验证该数值模型。然后全面预测穿孔板的砰击系数和自由表面轮廓。通过研究平板水进入现象,发现空气可压缩性起着重要作用。对于间隙长/宽比小的穿孔板,截留的空气通过板底部和自由表面之间的空间排出的能力是相似的。对于以固定的穿孔比具有不同间隙数的穿孔板,当间隙长/宽比增加时,砰击系数会增加。然而,由于间隙数的增加,长度/宽度比的进一步增加可能对捕获的空气的逸出造成负面影响。

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