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Experimental and numerical investigation on the dynamic response of a simplified open floating slender structure subjected to underwater explosion bubble

机译:水下爆炸泡沫的简化开放漂浮结构动态响应的实验和数值研究

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A simplified open floating slender structure is used to investigate the dynamic behaviors of the warship in this paper. The deformation and damage mechanisms of the simplified open floating slender structure subjected to the underwater explosion are studied using the experiment and the Coupled Eulerian-Lagrangian (CEL) method. Firstly, a validation for the CEL method is carried out, where the numerical results agree well with the results in experiment. Subsequently, in order to analyze the deformation and damage characteristics of the simplified open floating slender structure subjected to the underwater explosion, a series of cases for different detonation distances and different charge weights are carried out. In the cases, the results indicate that the deformation and damage of the simplified open floating slender structure are mainly induced by the bubble, and the damage induced by the shock wave is not obvious. For small charge weight and large detonation distance, the whipping motion is the main deformation form of the simplified open floating slender structure. When the charge weight increases or the detonation distance decreases to a critical value, the simplified floating slender structure is damaged in a longitudinal bending mode with a plastic hinge generated in the middle region.
机译:简化的开放式浮动纤细结构用于研究本文的战舰的动态行为。使用实验和耦合的Eulerian-Lagrangian(CEL)方法研究了对水下爆炸进行的简化开放浮动结构的变形和损伤机制。首先,进行对CEL方法的验证,其中数值结果与实验结果很好。随后,为了分析经过水下爆炸的简化开放浮动细长结构的变形和损伤特性,执行了一系列不同爆炸距离和不同电荷重量的情况。在此情况下,结果表明,通过气泡引起简化开放浮动结构的变形和损坏,并且受冲击波引起的损伤并不明显。对于小电荷重量和大的爆轰距离,搅打运动是简化开放浮动结构的主要变形形式。当电荷重量增加或爆轰距离降低到临界值时,简化的浮动细长结构在纵向弯曲模式中损坏,纵向弯曲模式具有在中间区域中产生的塑料铰链。

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