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作 者:刘丽滨 李海涛 刁爱民[2] 张海鹏[1] 杨理华 LIU Libin;LI Haitao;DIAO Aimin;ZHANG Haipeng;YANG Lihua(Navy Submarine Academy,Qingdao 266199,Shandong,China;College of Naval Architecture and Ocean Engineering,Naval University of Engineering,Wuhan 430033,Hubei,China)
机构地区:[1]海军潜艇学院,山东青岛266199 [2]海军工程大学舰船与海洋学院,湖北武汉430033
出 处:《高压物理学报》2021年第6期176-183,共8页Chinese Journal of High Pressure Physics
基 金:国家自然科学基金(51909267,51679244);山东省自然科学基金(ZR2019QEE031)。
摘 要:为研究水下非接触爆炸作用下船体梁的总体损伤特性,建立了炸药在船体梁中部正下方爆炸模型,应用船体梁总体响应数值计算方法,并结合缩比船体梁模型,试验验证了该方法的有效性,从损伤模式、频率响应等方面研究了船体梁的总体响应特性。结果表明:该数值方法较好地模拟了第一次气泡脉动阶段内梁的响应周期和幅值;在气泡脉动频率接近船体梁一阶湿频率时,随着爆径比减小,船体梁的总体响应模式由鞭状运动逐渐向中垂损伤转变。In order to study the overall damage characteristics of hull girder subjected to non-contact underwater explosion,a numerical method was established in which an explosive charge was located at the mid-span of the hull girder.The effectiveness of this method was verified by the model test.The damage mode and frequency response were studied to analyze the overall response of the hull girder.Results showed that the numerical method can simulate the response period and amplitude of the hull girder during the first bubble pulsation phase.When the bubble pulsation frequency approximated the first wet frequency of the hull girder,the response mode of girder will transform from whipping motion to sagging with the decrease of the ratio of stand-off to maximum bubble radius.
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