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Adaptive concurrent multi-scale FEM for trans-scale damage evolution in heterogeneous concrete

机译:异质混凝土中跨尺度损伤演化的自适应并发多尺度有限元

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摘要

This paper presents a new adaptive concurrent multi-scale FEM (ACMFEM) to simulate the trans-scale failure processes from material damage in meso-scale to local failure area in macro-scale and eventually to global failure for concrete structures. The method can carry out automatically trans-scale coupling analysis on the failure process without user intervention. As cases studies of the method, the trans-scale failure processes of a L-shaped concrete component subjected to gradually increasing displacement loading and reinforced concrete (RC) column under seismic loading are simulated by using the developed method. The results show that, the developed method can be used to reveal the trans-scale failure mechanism of concrete structures by considering the process from material damage in meso-scale to local failure area in macro-scale and eventually to global failure in structural scale; and it is reliable in simulation on evolving damage and failure in concrete structures with the adaptive capability as well as better computational efficiency. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一种新的自适应并发多尺度有限元法(ACMFEM),以模拟跨尺度的破坏过程,从中尺度的材料破坏到宏观尺度的局部破坏区域,再到混凝土结构的整体破坏。该方法可以在故障过程中自动进行跨尺度耦合分析,而无需用户干预。作为该方法的实例研究,采用改进的方法模拟了逐渐增加位移荷载和钢筋混凝土(RC)柱在地震荷载作用下的L形混凝土构件的跨尺度破坏过程。结果表明,通过考虑从中观尺度的材料破坏到宏观尺度上的局部破坏区域,再到结构尺度上的整体破坏的过程,该方法可以揭示混凝土结构的跨尺度破坏机理。具有自适应能力和较好的计算效率,对混凝土结构的演化破坏和破坏进行仿真是可靠的。 (C)2015 Elsevier B.V.保留所有权利。

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