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SEISMIC TEST ANALYSIS EVALUATION OF MOTOR-OPERATED VALVE ACTUATORS FOR NUCLEAR POWER PLANT

机译:核电站电动阀门执行器的地震试验分析评价

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The function of motor-operated valves provided in nuclear power plants during an earthquake has been previously evaluated on the basis of seismic test results; however, since the response acceleration has increased with a recent reassessment of standard earthquake ground motions, it is necessary to evaluate their function during high acceleration earthquakes. In order to carry out seismic test analysis, we examined the compression characteristics of the gaskets in three kinds of representative valves, in terms of the current load and slide coefficient, by element tests. We created an analysis method using the finite element method which used the gasket's characteristics, and the result of these analyses could explain the loosing and the amplitude of the bolt connecting force and gasket slipping at the time of excitation to the safety side. According to the analysis, the actuator connection part of the motor-operated butterfly valve showed a seismic resistance of 20×9.8m/s~2 and other parts showed a seismic resistance of 30×9.8m/s~2.
机译:在地震期间,在地震期间在地震期间提供的电动阀的功能是在地震测试结果的基础上进行评估的;然而,由于响应加速度随着标准地震地面运动的最近重新评估而增加,因此在高加速地震期间有必要评估其功能。为了进行地震检测分析,我们在电流载荷和滑动系数方面检查了三种代表性阀的垫圈的压缩特性,通过元素试验。我们使用使用垫圈特性的有限元方法创建了一种分析方法,并且这些分析的结果可以解释在激发到安全侧的螺栓连接力和垫圈的失去和振幅的损失和凸起。根据分析,电动蝶阀的致动器连接部分显示出20×9.8m / s〜2的地震电阻,其他部件表现出30×9.8m / s〜2的地震电阻。

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