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On the regimes of underwater explosion for a submerged slender structure by pulsating bubble
Institution:1. Petrobras, CENPES – Research and Development Center, Rio de Janeiro, Brazil;2. Department of Mechanical Engineering, Pontifical Catholic University of Rio de Janeiro, Rio de Janeiro, Brazil;3. Department of Civil and Environmental Engineering, University of Illinois, Urbana, IL 61801, USA;1. Department of Naval Architecture and Ocean Engineering, INHA University, 100, Inha-Ro, Nam-Gu, Incheon, South Korea;2. DSME R&D Institute, Daewoo Shipbuilding and Marine Engineering Co., Ltd., 26, Eulji-Ro 5 gil, Jung-Gu, Seoul, South Korea;1. Hadal Science and Technology Research Center, Shanghai Ocean University, No.999 Hucheng Huan Road, Shanghai, 201306, China;2. School of Naval Architecture and Ocean Eng., Jiangsu University of Science and Technology, Zhenjiang, 212003, China
Abstract:Three regimes: near-, middle- and far-fields of underwater explosion are proposed in this study aiming at providing an overview on the responses of submerged slender structure by pulsating bubble. In the near-field, the material starts to yield, thus leading to structure breakdown immediately; remarkable structural global elastic deformation occurs in the middle-field as well as substantial movement; and a structure moves as a rigid body with negligible deformation for the far-field. Equivalent dimensionless parameters are obtained by two different dimensional analysis methods, among which a dominant similarity parameter is found out. Thus, a scaling law providing us with a relation between structural global response and the dominant similarity parameter is yielded, which can be used for demarcating the three regimes quantitatively. To demonstrate, three models corresponding to typical submarine parameters are performed in the case studies. Quantitative criterion of the three regimes is presented along with the regime diagrams. The structural global response features such as the deformation and maximal acceleration/speed of different regimes are provided as well.
Keywords:Submarine  Similarity analysis  Cauchy number  Scaling law  Far-field
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