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A multi-physics approach to simulate the RF-heating 3D power map induced by the proton beam in a beam intercepting device

机译:一种多物理方法,用于模拟光束拦截装置中质子束引起的RF加热3D功率图

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The project High Luminosity Large Hadron Collider (HL-LHC) calls for a streaking beam intensity and brightness in the LHC machine. In such a scenario, beam-environment electromagnetic interactions are a crucial topic: they could lead to uneven power deposition in machine equipment. The resulting irregular temperature distribution would generate local thermal gradients, this would create mechanical stresses which could lead to cracks and premature failure of accelerator devices. This work presents a method to study this phenomenon by means of coupled electro-thermo-mechanical simulations. Further, an example of application on a real HL-LHC device is also discussed.
机译:该项目高亮度大型强子撞机(HL-LHC)要求LHC机器中的条纹光束强度和亮度。在这种情况下,光束环境电磁相互作用是一个关键主题:它们可能导致机器设备中的功率沉积不均匀。由此产生的不规则温度分布将产生局部热梯度,这将产生机械应力,这可能导致裂缝和加速器装置的过早失效。该工作介绍了一种通过耦合电热机械模拟研究这种现象的方法。此外,还讨论了真实HL-LHC设备上的应用示例。

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