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Damage and vibrations of nuclear power plant buildings subjected to aircraft crash part I: Model test

机译:核电厂建筑物经过飞机崩溃的损坏和振动I:模型试验

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Investigations of large commercial aircraft impact effect on nuclear power plant (NPP) buildings have been drawing extensive attentions, particularly after the 9/11 event, and this paper aims to experimentally assess the damage and vibrations of NPP buildings subjected to aircraft crash. In present Part I, two shots of reduce-scaled model test of aircraft impacting on NPP building were carried out. Firstly, the 1:15 aircraft model (weighs 135?kg) and RC NPP model (weighs about 70?t) are designed and prepared. Then, based on the large rocket sled loading test platform, the aircraft models were accelerated to impact perpendicularly on the two sides of NPP model, i.e., containment and auxiliary buildings, with a velocity of about 170?m/s. The strain-time histories of rebars within the impact area and acceleration-time histories of each floor of NPP model are derived from the pre-arranged twenty-one strain gauges and twenty tri-axial accelerometers, and the whole impact processes were recorded by three high-speed cameras. The local penetration and perforation failure modes occurred respectively in the collision scenarios of containment and auxiliary buildings, and some suggestions for the NPP design are given. The maximum acceleration in the 1:15 scaled tests is 1785.73?g, and thus the corresponding maximum resultant acceleration in a prototype impact might be about 119?g, which poses a potential threat to the nuclear equipment. Furthermore, it was found that the nonlinear decrease of vibrations along the height was well reflected by the variations of both the maximum resultant vibrations and Cumulative Absolute Velocity (CAV). The present experimental work on the damage and dynamic responses of NPP structure under aircraft impact is firstly presented, which could provide a benchmark basis for further safety assessments of prototype NPP structure as well as inner systems and components against aircraft crash.
机译:对核电站(NPP)建筑物的大型商用飞机影响效应的调查一直在借鉴广泛的关注,特别是在9/11活动之后,旨在通过实验评估遭受飞机崩溃的NPP建筑物的损害和振动。在本部分I中,进行了对NPP建设影响的飞机缩小模型试验的两次镜头。首先,设计和准备了1:15飞机模型(重135 kg)和Rc NPP模型(重约70吨)。然后,基于大型火箭橇装载平台,飞机模型加速以垂直于NPP模型的两侧垂直冲击,即容纳和辅助建筑物,速度约为170μm/ s。 NPP模型的每个楼层的冲击区域和加速时间历史中的钢筋的应变时间历史源自预先布置的二十一个应变仪和20个三轴加速度计,并将整个冲击过程记录为三个高速摄像头。局部穿透和穿孔失效模式分别发生在容纳和辅助建筑物的碰撞场景中,并给出了对NPP设计的一些建议。 1:15缩放测试中的最大加速度为1785.73?g,因此原型碰撞中的相应最大结果加速度可能是大约119?g,这给核设备带来了潜在的威胁。此外,发现沿着高度的振动的非线性降低良好地反映了最大合成振动和累积绝对速度(Cav)的变化。首先提出了对飞机影响下NPP结构损伤和动力响应的本实验研究,可以为原型的NPP结构以及对飞机碰撞的内部系统和部件提供基础的基准。

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