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Shaking table model tests of concrete containment Vessel (CCV) for CPR1000 nuclear power plant

机译:CPR1000核电站混凝土安全壳(CCV)的振动台模型试验

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Containment vessel of nuclear power plant is the last barrier to prevent the leakage of radioactive materials, so the seismic performance is of high importance. In order to investigate the seismic performance of the CPR1000 prestressed concrete containment vessel (PCCV) structure under design and beyond-design basis earthquake, a 1/20 scale concrete containment vessel (CCV) model was designed and constructed on the shaking table based on the similitude requirements from the Buckingham's it Theorem. The horizontal and vertical earthquake waves generated from RG1.60 spectrum were selected as the input earthquake waves in the shaking table model test, and the earthquake waves with peak ground acceleration (PGA) 0.2g, 0.3g, 0.4g, 0.5g, 0.7g, 0.9g and 1.2g respectively were loaded step by step until the macroscopic failure occurred in the model containment vessel. The dynamic responses of the model CCV were obtained from the acceleration sensors and resistance strain gages. The model test results showed that the maximum acceleration magnification factor of the model CCV was 1.974 with PGA of 0.2g, which indicated that the CCV had a good seismic-resistant behavior under 0.2g earthquake. Until the second last test case with the horizontal peak earthquake motion of 0.9g (corresponding to 0.9g for the prototype structure), the fundamental frequency of the model CCV only decreased slightly and the maximum tensile strains at all monitoring points were much smaller than the ultimate tensile strain. It meant that the model CCV as a whole was within the elastic range. In the last case (1.2g), the model fundamental frequency decreased steeply. At the same time, the maximum tensile strains at the heel of the cylinder wall far exceeded the ultimate tensile strain and a circle of cracks occurred at the cylinder wall heel. It meant rupture failure had occurred and the cylinder wall heel of the CCV was the weak region. It agreed well with the numerical analysis results and the visual inspection and camera record at the test site. Although a circle of concrete cracks appeared around the cylinder wall foot, the model CCV still remained integral as a whole and neither cracking parts dislocation nor collapse occurred. Because the test model was a plain concrete structure and the model test results should be conservative estimation, it can be concluded that the prototype PCCV for CPR1000 nuclear power plant had sufficient seismic safety margin. (C) 2016 Elsevier Ltd. All rights reserved.
机译:核电站安全壳是防止放射性物质泄漏的最后障碍,因此抗震性能具有重要意义。为了研究CPR1000预应力混凝土安全壳(PCCV)结构在设计和超设计基准地震下的抗震性能,基于振动台设计并构建了一个1/20比例的混凝土安全壳(CCV)模型。白金汉的it定理对相似性的要求。在振动台模型试验中,选择了从RG1.60谱产生的水平和垂直地震波作为输入地震波,并选择了峰值地面加速度(PGA)为0.2g,0.3g,0.4g,0.5g,0.7的地震波。分别逐步加载g,0.9g和1.2g,直到模型容纳容器中发生宏观破坏为止。 CCV模型的动态响应是从加速度传感器和电阻应变计获得的。模型测试结果表明,CCV模型的最大加速度放大系数为1.974,PGA为0.2g,表明CCV在0.2g地震下具有良好的抗震性能。直到倒数第二个测试案例的水平峰值地震运动为0.9g(对应于原型结构的0.9g)之前,CCV模型的基本频率仅略有下降,并且在所有监测点处的最大拉伸应变均远小于标准应变。极限拉伸应变。这意味着CCV模型总体上处于弹性范围内。在最后一种情况下(1.2g),模型的基本频率急剧下降。同时,在汽缸壁根部的最大拉伸应变远超过极限拉伸应变,并且在汽缸壁根部产生了裂纹圈。这意味着发生了破裂故障,CCV的圆柱壁跟是薄弱区域。它与数值分析结果以及在测试现场的目视检查和摄像机记录非常吻合。尽管圆柱体壁脚周围出现了一个混凝土裂缝圈,但CCV模型仍总体上是完整的,并且没有裂缝部位错位或塌陷。由于该试验模型为普通混凝土结构,模型试验结果应为保守估计,因此可以得出结论:用于CPR1000核电站的PCCV原型具有足够的地震安全裕度。 (C)2016 Elsevier Ltd.保留所有权利。

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