首页> 外文OA文献 >A coupled multiphysics FEM model to investigate electromagnetic, thermal and mechanical effects in complex assemblies: The design of the High-Luminosity Large Hadron Collider beam screen
【2h】

A coupled multiphysics FEM model to investigate electromagnetic, thermal and mechanical effects in complex assemblies: The design of the High-Luminosity Large Hadron Collider beam screen

机译:耦合的多体型有限元模型,用于研究复杂组件中的电磁,热和机械效果:高亮度大强子撞机梁筛的设计

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

In the framework of the High Luminosity Large Hadron Collider (HL-LHC) project, new beam screens will be installed by 2024 within the cold bore of the superconducting magnets. The beam screen is an octagonal shaped pipe that shields the 1.9 K magnet cryogenic system from the heat loads and damage to the magnet coils that would be otherwise induced by the highly penetrating collision debris. It also ensures that proper vacuum conditions required for the stability of the beam are met. A failure scenario of the beam screen is represented by the magnet quench, a resistive transition of the superconducting magnets, that can compromise its mechanical integrity. During a quench the magnet gradient of the quadrupole, in which the beam screen is inserted, decays from 140 T/m to about 0 T/m in 0.4 s inducing high magnitude forces in the assembly. Understanding the magnetic, thermal and mechanical behaviours of the beam screen assembly during the quench is critical to enable its effective design and operation. A numerical model, that can accurately predict the behaviours of the beam screen during a magnet quench, has been developed. Compared to the analytical formulations used to design the beam screen currently installed in the LHC, the multiphysics FEM model developed in this research introduces multiple elements of novelty and improved performance. First, self-inductance effects are accounted for and found to reduce the induced forces up to approximately 2000 % at high electrical conductivity values. Second, the one-way and two-way coupling of the magnetic with the mechanical and thermal interfaces are explored and the best trade-off is defined. Third, the mechanical response of the assembly is evaluated dynamically over the evolution of the magnetic field decay rather than just in a quasi-static manner. Fourth, three dimensional geometries can also be studied enabling the design of the components to be placed along the beam axis. The model has been verified by comparison to a closed form expression showing the advantages of considering self-inductance phenomena. The mechanical integrity of the new beam screen has been demonstrated and a less conservative design has been obtained, which has permitted to relax the tight constraints on interfacing systems. Amongst other applications, the model has already been applied at CERN to support the conceptual design of an ad-hoc beam screen for the Future Circular Collider (FCC).
机译:在高亮度大型强子撞机(HL-LHC)项目的框架中,新的光束屏幕将在超导磁铁的冷孔内安装2024。光束屏幕是八边形状管,其屏蔽1.9 k磁体低温系统从热负荷和磁线圈的损坏,以其他方式由高度渗透的碰撞碎屑造成。它还确保满足光束稳定性所需的适当真空条件。光束屏幕的故障场景由磁体骤冷,超导磁铁的电阻转变表示,这可能会损害其机械完整性。在淬火时,在插入光束屏幕的四极孔的磁体梯度期间,在组件中的0.4秒的诱导高幅度力中衰减从140 t / m至约0 t / m。理解淬火期间光束筛组件的磁,热和机械行为至关重要,以实现其有效的设计和操作。已经开发了一种数值模型,其可以显影在磁体淬火期间可以精确地预测光束屏幕的行为。与用于设计LHC目前安装的光束屏幕的分析配方相比,本研究中开发的多体型有限元模型引入了多种新颖性和改进性能的元素。首先,占自化效应,并发现在高电导率值下将诱导力降低至约2000%。其次,探索了磁性接口的单向和双向耦合,并定义了最佳折衷。第三,在磁场衰减的演变中动态地评估组件的机械响应,而不是以准静态方式进行评估。第四,还可以研究三维几何形状,使得能够沿着梁轴放置的部件的设计。通过与闭合形式表达进行验证,验证了模型,显示了考虑自感现象的优势。已经证明了新光束屏幕的机械完整性,并且已经获得了更少的保守设计,这允许在接口系统上放松紧张的限制。在其他应用程序中,该模型已经在CERN中应用,以支持未来圆形撞机(FCC)的Ad-Hoc光束屏幕的概念设计。

著录项

相似文献

  • 外文文献
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号