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Ultimate strength of reinforce concrete shear walls under multi-axes seismic loads

机译:多轴地震荷载下钢筋混凝土剪力墙的极限强度

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"The model test on multi-axes loading on RC shear walls" had been carried out as for the 10-year project aiming at comprehension of the earthquake response behavior of three-dimensional (3D) reinforced concrete (RC) shear walls under the 3D of multi-axes earthquake loading condition. The motivation of the project building-up is that the current seismic design of nuclear power plant building is carried out by applying one-dimensional (1D) dynamic earthquake load to an analytical building model in each direction independently whereas actual earthquake jolts the building in the three directions simultaneously. Therefore, there were opinions requesting some testing confirm whether or not the current seismic design methodology is reliable for the input motions exceeding the design earthquake ground motion moreover for the input motions of the 3D. The project had completed with various valuable outcomes that can reply to the opinions. Moreover, the outcomes will play an important role in evaluating seismic margins of important structures in a nuclear power plant. In this paper, based on the published documents relating to this test project, the author describes a review of the whole testing and summarizes the major outcomes extracted by the test project.
机译:针对为期10年的项目,已经进行了“ RC剪力墙多轴荷载模型测试”,旨在理解3D立体下的三维(3D)钢筋混凝土(RC)剪力墙的地震响应行为。多轴地震荷载条件该项目建设的动机是,当前的核电站建筑抗震设计是通过将一维(1D)动态地震荷载独立地应用于各个方向的分析建筑模型而进行的,而实际地震则使建筑物震动。三个方向同时进行。因此,有意见要求进行一些测试,以确认当前的地震设计方法对于输入运动是否超出设计地震地面运动,以及对于3D输入运动是否可靠。该项目已经完成,并获得了各种有价值的成果,可以回应人们的意见。此外,结果将在评估核电厂重要结构的地震余量方面发挥重要作用。在本文中,基于与该测试项目有关的已发布文档,作者描述了对整个测试的回顾,并总结了测试项目提取的主要结果。

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