首页> 外文会议>International conference on nuclear engineering >RESEARCH ON THE SHOCK RESISTANCE OPTIMAL DESIGN OF SUBMERGED NUCLEAR POWER PLANTS MODEL SUBJECTED TO UNDERWATER EXPLOSIONS
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RESEARCH ON THE SHOCK RESISTANCE OPTIMAL DESIGN OF SUBMERGED NUCLEAR POWER PLANTS MODEL SUBJECTED TO UNDERWATER EXPLOSIONS

机译:水下爆炸水下核电站模型的抗冲击优化设计研究

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The research on the linear and nonlinear responses of the plant structures, especially with internal equipment, subjected to underwater shock load make great significance in assessing the shock resistance ability of submerged nuclear power plants. In this paper, an optimal design of a small-sized submerged vehicle with internal components has been carried out to enhance the shock resistance. The dynamic responses and deformation mode of the vehicle subjected to underwater shock wave are firstly analyzed to determine the weak parts. The incident wave induced by UNDEX is equivalently replaced by half-sine shock wave, as the calculation of fluid-structure interaction (FSI) in the optimization process is very complicated. Based on the constraint condition of invariant weight, an optimization procedure is established by means of the commercial finite element code and optimization method. Numerical simulation is carried out to validate the effective of the optimal procedure. Compared with the original one, the maximum Mises stress of the submerged vehicle decreased from 426MPa to 359MPa, approximately reducing by 15.73%. The optimal result can be used to redesign the submerged vehicle with internal components suffered from underwater shock loading, as well as to enhance the anti-shock capability of submerged nuclear power plants.
机译:研究水下冲击载荷作用下植物结构,特别是内部设备的线性和非线性响应,对评估淹没式核电站的抗冲击能力具有重要意义。在本文中,对具有内部组件的小型潜水车进行了优化设计,以提高其抗冲击性。首先分析了车辆在水下冲击波作用下的动力响应和变形模式,确定了其薄弱环节。由于在优化过程中流固耦合的计算非常复杂,因此UNDEX引起的入射波被半正弦冲击波等效替代。基于不变权重的约束条件,利用商业有限元代码和优化方法建立了优化程序。进行了数值模拟,以验证最佳程序的有效性。与原来的相比,潜水车的最大Mises应力从426MPa降低到359MPa,大约降低了15.73%。最佳结果可用于重新设计具有水下冲击负荷的内部组件的潜水器,并增强潜水核电站的抗冲击能力。

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