首页> 外文会议>2AESE 2007;International Conference on Advances in Experimental Structural Engineers >COLLAPSE SIMULATION OF A FOUR-STORY STEEL MOMENT-RESISTING FRAME BY DISTRIBUTED ONLINE HYBRID TEST
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COLLAPSE SIMULATION OF A FOUR-STORY STEEL MOMENT-RESISTING FRAME BY DISTRIBUTED ONLINE HYBRID TEST

机译:分布式在线混合试验对四层钢抗弯框架的倒塌模拟

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The online test system, Peer-to-Peer (P2P) Internet online hybrid test system, is one of the appealing hybrid test systems developed recently. In this system, multiple substructures, either numerical or experimental, can be treated independently with only the exchange of boundary forces and displacements. The system has been demonstrated to be valid and capable of handling multiple numerical nonlinear substructures. However, its feasibility to accommodate multiple tested substructures had not been verified. To explore this possibility, a one- bay, four-story steel planar moment-resisting frame was analyzed. When the frame is subjected to extremely large earthquakes, plastic hinges form not only at the beam ends but also at the column bases where significant deterioration might occur due to the axial load. In this study, the two column bases of the frame are taken as the tested parts, while the superstructure is analyzed by ABAQUS. The three substructures are distributed to three different locations and connected through the Internet. The plastic rotations of the two column bases are treated as boundary displacements. The implicit plastic rotation is transformed to the corresponding translational displacement at the top of a cantilever column and controlled by the loading facilities. The system ran well without any malfunction and the concurrent implementation of the two tested substructures was successful, which demonstrate the feasibility and stability for the P2P system to handle multiple tested substructures involving significant resistance deterioration in part of the structure.
机译:在线测试系统,即对等(P2P)Internet在线混合测试系统,是最近开发的有吸引力的混合测试系统之一。在该系统中,仅需交换边界力和位移即可独立处理数值或实验的多个子结构。该系统已被证明是有效的,并且能够处理多个数值非线性子结构。但是,尚未证明其可容纳多个经过测试的子结构的可行性。为了探索这种可能性,分析了一个单层,四层的钢制平面抗力矩框架。当框架遭受极大地震时,塑料铰链不仅会在梁的端部形成,而且会在柱基处形成,这些处可能会由于轴向载荷而导致严重损坏。在这项研究中,框架的两个柱基被用作被测试的零件,而上部结构则通过ABAQUS进行分析。这三个子结构分布在三个不同的位置,并通过Internet连接。两个立柱基座的塑性旋转被视为边界位移。隐式塑性旋转在悬臂柱的顶部转换为相应的平移位移,并由加载设备控制。该系统运行良好,没有任何故障,并且两个被测试子结构的并行实现均成功完成,这证明了P2P系统处理多个被测试子结构的可行性和稳定性,这些子结构涉及部分结构中的显着电阻降低。

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