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关于民事诉讼当事人有关问题的探讨
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作者 鹿国庆 《芜湖职业技术学院学报》 2010年第4期35-36,共2页
对当事人问题进行研究,对于民事诉讼立法和民事诉讼实践具有指导意义,它有助于在立法上对当事人作出科学的规范,进而有助于在实践中对案件作出恰当的处理。当今,我国的法律理论界对当事人有关问题的规定存在许多弊端,在实践中涉及诸多... 对当事人问题进行研究,对于民事诉讼立法和民事诉讼实践具有指导意义,它有助于在立法上对当事人作出科学的规范,进而有助于在实践中对案件作出恰当的处理。当今,我国的法律理论界对当事人有关问题的规定存在许多弊端,在实践中涉及诸多方面。对有关当事人的定义、分类以及更换的问题所进行的一些探讨对今后的立法修改有一定参考价值。 展开更多
关键词 当事人 程序适格 实体实
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Dynamic Adaptive Finite Element Analysis of Acoustic Wave Propagation Due to Underwater Explosion for Fluid-structure Interaction Problems 被引量:4
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作者 Seyed Shahab Emamzadeh Mohammad Taghi Ahmadi +1 位作者 Soheil Mohammadi Masoud Biglarkhani 《Journal of Marine Science and Application》 CSCD 2015年第3期302-315,共14页
In this paper, an investigation into the propagation of far field explosion waves in water and their effects on nearby structures are carried out. For the far field structure, the motion of the fluid surrounding the s... In this paper, an investigation into the propagation of far field explosion waves in water and their effects on nearby structures are carried out. For the far field structure, the motion of the fluid surrounding the structure may be assumed small, allowing linearization of the governing fluid equations. A complete analysis of the problem must involve simultaneous solution of the dynamic response of the structure and the propagation of explosion wave in the surrounding fluid. In this study, a dynamic adaptive finite element procedure is proposed. Its application to the solution of a 2D fluid-structure interaction is investigated in the time domain. The research includes:a) calculation of the far-field scatter wave due to underwater explosion including solution of the time-depended acoustic wave equation, b) fluid-structure interaction analysis using coupled Euler-Lagrangian approach, and c) adaptive finite element procedures employing error estimates, and re-meshing. The temporal mesh adaptation is achieved by local regeneration of the grid using a time-dependent error indicator based on curvature of pressure function. As a result, the overall response is better predicted by a moving mesh than an equivalent uniform mesh. In addition, the cost of computation for large problems is reduced while the accuracy is improved. 展开更多
关键词 adaptive mesh fluid-structure interaction acoustic wave finite element analysis underwater explosion
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