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Shock loads induced on metal structures by LHC proton beams: modelling of thermo-mechanical effects

机译:LHC质子梁在金属结构上引起的冲击载荷:热机械效果建模

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In this work, the numerical simulations of the LHC high energy particle beam impact against a metal structure are performed using the commercial FEM code LS-DYNA. The evaluation of thermal loads on the hit material is performed using a statistical code, called FLUKA, based on the Monte-Carlo method, which returns an energy map on a particular geometry (taking into account all the particles in the cascade generated by the interaction between the proton beam and the target). The FLUKA results are then used as input for thermo-structural studies. The first step of this work is the validation of the numerical procedure on a simple geometry for two different materials (copper and tungsten) and constitutive material models. In particular, the high energy particle impact is examined on a facially irradiated cylindrical bar: the beam hits the component directly on the centre of the basis. Then the final step is the study of the impact on a real structure with an energy beam of 5 TeV (the next target in the energy value of LHC beam).
机译:在这项工作中,使用商业有限元代码LS-DYNA进行对金属结构的LHC高能粒子束撞击的数值模拟。基于蒙特卡罗方法,使用称为Fluka的统计代码进行热载物的评估,该方法返回特定几何形状上的能量图(考虑到通过交互产生的级联中的所有粒子在质子梁和目标之间)。然后将Fluka结果用作热结构研究的输入。这项工作的第一步是验证两种不同材料(铜和钨)和组成材料模型的简单几何形状的数值程序。特别地,在面部照射的圆柱形杆上检查高能粒子冲击:该光束直接在基础的中心处击中组件。然后,最终步骤是对具有5 Tev的能量束的实际结构的影响(LHC束的能量值中的下一个目标)的影响研究。

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