水面冲击载荷作用于球茎型船首

K. Tanizawa, Makiko Minami, Y. Ogawa, Yasuhira Yamada
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引用次数: 2

摘要

作为船舶防碰溢油结构设计项目研究的一部分,研究了柔性球首结构的优化设计,以吸收碰撞船舶的动能。这种灵活的球茎弓被称为缓冲弓。为了制定缓冲弓的设计准则,从理论上和实验上研究了作用在球管弓上的水动力冲击力。在理论研究方面,采用椭球体近似球弓形,利用von Karman动量理论估算出给定速度下出弓对自由表面的撞击载荷。运用瓦格纳的冲击理论研究了自由表面膨胀的影响。基于动量理论,提出了一种冲击载荷的估计方法。为了验证该估计方法,在NMRI的80m平方的水箱中进行了实验。实验采用自航式集装箱船模型。测量了球茎弓根部的竖向、侧向剪力和弯矩。本文给出了研究结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Water surface impact loads acts on bulbous bow of ships
As a part of the project study concerning on ship structural design for oil spill prevention by collision, optimal design of flexible bulbous bow structure is studied to absorb kinetic energy of the colliding ship. Such a flexible bulbous bow is named as buffer bow. To formulate design criteria of the buffer bow, the hydrodynamic impact forces acts on the bulbous bow was studied theoretically and experimentally. For theoretical study, shape of the bulbous bow was approximated by an ellipsoid and von Karman's momentum theory was applied to estimate the slamming impact loads with given impact velocity of the emerged bow to free surface. Wagner's impact theory was also applied to study the effect of free surface swell up. Based on the momentum theoy, an estimation method of the impact loads was proposed. To validate the estimation method, a experiment was conducted at the 80m square tank of NMRI. A self-propelling container ship model was used for the experiment. The vertical and lateral shearing forces and bending moments at the root of the bulbous bow were measured. In this paper, the results of the study are presented.
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