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Seismic proof test of a reinforced concrete containment vessel (RCCV) Part 2: Results of shaking table tests

机译:钢筋混凝土安全壳(RCCV)的抗震试验第2部分:振动台试验结果

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摘要

A 1/8-scale model was constructed of a reinforced concrete containment vessel (RCCV) used in the latest advanced boiling water reactors (ABWR). Shaking table tests were conducted on it with input motions corresponding to or exceeding a design earthquake assumed for a real Nuclear Power Plant. The objectives of the tests were to verify the structural integrity and the leak-proof functional soundness of the RCCV subjected to design earthquakes, and to determine the ultimate strength and seismic margin by an excitation that led to the model's collapse. The model, the test sequence and the pressure and leak test results were addressed in Part 1. The shaking table test method, the input motions and the test results, including the transition of the model's stiffness, natural frequencies and damping factors and the effects of vertical input motions and internal pressure on the model's characteristics and behavior, the load-deformation, the ultimate strength, the failure mode of the reinforced concrete portion and the liner plate are described here. The seismic safety margin that was evaluated by the energy input during the failure test to a design basis earthquake will be described in Part 3. The analytical results of simulation using the multi-lumped mass model will be described in Part 4.
机译:1/8比例模型由用于最新先进沸水反应堆(ABWR)的钢筋混凝土安全壳(RCCV)构成。在输入运动对应于或超过为实际核电站假定的设计地震的情况下,对其进行了振动台测试。测试的目的是验证遭受设计地震的RCCV的结构完整性和防漏功能的健全性,并通过导致模型崩溃的激励确定极限强度和地震裕度。该模型,测试顺序以及压力和泄漏测试结果在第1部分中进行了介绍。振动台测试方法,输入运动和测试结果,包括模型的刚度,固有频率和阻尼系数的转变以及振动的影响。垂直输入运动和内部压力对模型的特性和行为,载荷变形,极限强度,钢筋混凝土部分和衬板的破坏模式的描述如下。在第3部分中将描述通过对设计基准地震进行破坏测试期间的能量输入评估的地震安全裕度。在第4部分中将描述使用多集总质量模型进行模拟的分析结果。

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