Lo Frano Rosa
Department of Industrial and Civil Engineering (DICI), University of Pisa, 56126 Pisa, Italy.
Materials (Basel). 2021 Feb 8;14(4):816. doi: 10.3390/ma14040816.
The impact of an aircraft is widely known to be one of the worst events that can occur during the operation of a plant (classified for this reason as beyond design). This can become much more catastrophic and lead to the loss of strength of/collapse of the structures when it occurs in the presence of ageing (degradation and alteration) materials. Therefore, since the performance of all plant components may be affected by ageing, there is a need to evaluate the effect that aged components have on system performance and plant safety. This study addresses the numerical simulation of an aged Nuclear Power Plant (NPP) subjected to a military aircraft impact. The effects of impact velocity, direction, and location were investigated together with the more unfavorable conditions to be expected for the plant. The modelling method was also validated based on the results obtained from the experiments of Sugano et al., 1993. Non-linear analyses by means of finite element (FE) MARC code allowed us to simulate the performance of the reinforced concrete containment building and its impact on plant availability and reliability. The results showed that ageing increases a plant's propensity to suffer damage. The damage at the impact area was confirmed to be dependent on the type of aircraft involved and the target wall thickness. The greater the degradation of the materials, the lower the residual resistance capacity, and the greater the risk of wall perforation.
飞机撞击的影响是众所周知的,它是工厂运行期间可能发生的最严重事件之一(因此被归类为超出设计范围)。当这种情况发生在存在老化(退化和改变)材料的情况下时,可能会变得更加灾难性,并导致结构强度丧失/坍塌。因此,由于所有工厂部件的性能都可能受到老化的影响,有必要评估老化部件对系统性能和工厂安全的影响。本研究针对遭受军用飞机撞击的老化核电站(NPP)进行数值模拟。研究了撞击速度、方向和位置的影响,以及工厂可能出现的更不利条件。还根据Sugano等人1993年的实验结果对建模方法进行了验证。通过有限元(FE)MARC代码进行的非线性分析使我们能够模拟钢筋混凝土安全壳建筑的性能及其对工厂可用性和可靠性的影响。结果表明,老化会增加工厂遭受损坏的倾向。撞击区域的损坏被证实取决于所涉及飞机的类型和目标墙体厚度。材料退化越严重,剩余抵抗能力越低,墙体穿孔的风险就越大。