Experimental Investigation of Bow Slamming on a Ship: The Effect of Weight and Impact Angle

Kapal Pub Date : 2021-02-28 DOI:10.14710/KAPAL.V18I1.35663
S. Baso, Andi Nadia Himaya, Faizal Arya Samman, A. D. E. Anggriani, R. Rosmani
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引用次数: 2

Abstract

The impact pressure induced by slamming can imply physical damage on a ship. The high probability of the slamming impact is on the bow part in the actual sea state. In this present study, the slamming induced pressure on the bow flare of a ship have been investigated through the experiment. The experiment was schemed by the dropping test based on free-falling body in the wave tank, wherein the bow of the ship model was inclined in several impact angles 0° to 30° to the free-water surface. To measure slamming impact pressure acting on the bow flare, the piezoelectric sensors S1, S2, S3, S4 were attached to the bow section and installed on a computer. As the obtained results, the impact pressure on bow flare occurred in a short time duration caused by slamming. The discrepancy of the peak impact pressure between ship model weight of 2.42 kg and 7.29 kg for the impact angle 0° is 70.36% S1, 69.52% S2, 68.97% S3, and 68.34% S4. For the relative impact angle of 30°, the discrepancy is 67.02% S1, 65.73% S2, 58.51% S3, and 48.21% S4. The tendency of the peak pressure coefficient at the sequenced impact points S1, S2, S3, S4 is similar for all impact angles 0°, 10°, 20°, and 30°. The peak pressure coefficient due to the full load condition is highest in the nearest bottom part, and the peak pressure coefficients due to the lightship condition highest in the nearest bottom part caused by the small impact angle.
船体船头撞击试验研究:重量和撞击角的影响
砰击引起的冲击压力可能意味着对船舶的物理损伤。在实际海况下,砰击撞击发生在船头部分的概率较高。在本研究中,通过实验研究了船舶船首扩口的砰击诱导压力。该实验采用波浪水槽中基于自由落体的跌落试验方案,其中船模型的船头相对于自由水面倾斜0°至30°的几个冲击角。为了测量作用在船头喇叭上的砰击冲击压力,将压电传感器S1、S2、S3、S4连接到船头部分并安装在计算机上。研究结果表明,砰击对船首扩口的冲击压力是在短时间内产生的。当冲击角为0°时,2.42kg和7.29kg的船模重量之间的峰值冲击压力差异为70.36%S1、69.52%S2、68.97%S3和68.34%S4。对于30°的相对冲击角,差异为67.02%S1、65.73%S2、58.51%S3和48.21%S4。对于所有0°、10°、20°和30°的冲击角,顺序冲击点S1、S2、S3、S4处的峰值压力系数趋势相似。满载条件下的峰值压力系数在最近的底部最高,而轻船条件下的峰压系数在小冲击角引起的最近底部最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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