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首页> 外文期刊>Proceedings of the International Conference on Coastal Engineering >NUMERICAL MODELLING OF FORCES, STRESSES AND BREAKAGES OF CONCRETE ARMOUR UNITS
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NUMERICAL MODELLING OF FORCES, STRESSES AND BREAKAGES OF CONCRETE ARMOUR UNITS

机译:混凝土装甲单元受力,应力和断裂的数值模拟

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Numerical modelling has the potential to probe the complexity of the interacting physics of rubble mound armour systems. Through forward modelling of armour unit packs, stochastic variables such as unit displacement and maximum contact force per unit during an external oscillatory disturbance can be predicted. The combined finite- discrete element method (FEMDEM) is a multi-body method ideally suited to model the behaviour of the armour layer system and the stresses generated within complex shape units. In this paper we highlight the latest developments made with the application of FEMDEM technology to breakwater modelling including realistic rock underlayer and concrete unit layer topologies, maximum contact force distributions, internal unit stresses, fracture and unit breakages. Finally, fully coupled wave and multi-body armour unit motion with internal dynamic stress generation is illustrated.
机译:数值建模具有探究瓦砾堆装甲系统相互作用物理的复杂性的潜力。通过对装甲单位背包进行正向建模,可以预测随机变量,例如外部振动扰动期间的单位位移和最大单位接触力。组合有限元法(FEMDEM)是一种多体方法,非常适合对装甲层系统的行为以及复杂形状单元内产生的应力进行建模。在本文中,我们重点介绍了将FEMDEM技术应用于防波堤模型的最新进展,包括现实的岩石底层和混凝土单元层拓扑,最大接触力分布,内部单元应力,断裂和单元破损。最后,说明了具有内部动态应力生成的完全耦合的波和多体装甲单位运动。

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