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作 者:刘俊杰[1] 刘昆[2] 从曙光 董海波[1] 夏劲松[1] LIU Junjie;LIU Kun;CONG Shuguang;DONG Haibo;XIA Jinsong(China Ship Scientific Research Center,Wuxi 214082,Jiangsu,China;School of Naval Architecture and Ocean Engineering,Jiangsu University of Science and Technology,Zhenjiang 212003,Jiangsu,China)
机构地区:[1]中国船舶科学研究中心,江苏无锡214082 [2]江苏科技大学船舶与海洋工程学院,江苏镇江212003
出 处:《爆炸与冲击》2021年第6期139-147,共9页Explosion and Shock Waves
基 金:工信部高技术船舶科研项目(工信部装函[2017]614号)。
摘 要:针对船舶冰区航行受冰体撞击结构损伤问题,以一种涉冰带船肩处船体板架结构为原型,提出了一种方槽型纵骨船舶抗冰结构型式。利用落锤冲击实验测试系统,对抗冰和原型加筋板架在相同冰体撞击工况下的结构动响应进行了实验研究,采用MSC.Dytran程序对板架受冰体撞击过程开展数值模拟,并与实验结果进行对比。结果表明,相同冰体撞击工况下,抗冰板架结构产生的撞击力比原型板架略大,冰体造成的抗冰板架结构最大凹陷深度小于原型板架。从船体外板结构损伤程度及对船体内部构件、设备防护作用的角度考虑,抗冰结构较原型具有一定的抗冰效果。研究成果可为冰区航行船或破冰船的抗冰结构设计提供参考。In this work,in order to reduce hull structural damage caused by ice impact,a new type of square groove longitudinal anti-ice structure is used in the shoulder structure of a hull in ice belt.Using a falling weight impact test system,the structural dynamic responses of anti-ice and prototype stiffened plates under the same ice impact case were tested and the impacting processes were simulated by the MSC.Dytran software.The results show that under the same impact conditions,the impact force produced by the anti-ice structure is slightly higher than that by the prototype one,and the maximum depression depth is smaller than that of the prototype one.According to the structural damage degree of the hull shell plates and their protection function to the hull internal components and equipment,the new structure has a certain anti-ice effect compared with the prototype structure.The results of the present study can provide a reference for the design of the anti-ice structures of ice-going ships or icebreakers.
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