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Design of an 18 MW vortex flow water beam dump for 500 GeV electrons/positrons of an international linear collider

机译:国际线性对撞机500 GeV电子/正电子的18 MW涡流水束倾卸装置的设计

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Beam dumps are essential components of any accelerator system. They are usually located at the end of the beam delivery systems and are designed to safely absorb and dissipate the particle energy. In the second stage of the proposed International Linear Collider (ILC), the electron and positron beams are accelerated to 500 GeV each (1 TeV total). Each bunch will have 2 × 10~(10) electrons/positrons, and 2820 bunches form one beam bunch train with time duration of 0.95 ms and 4 Hz frequency. The average beam power will be 18 MW with a peak power of 4.5 GW. The FLUKA code was used to determine the power deposited by the beam at all critical locations. This data forms the input into the thermal hydraulic analysis CFD code for detailed flow and thermal evaluation. Both 2D and 3D flow analyses were carried out at all the critical regions to arrive at optimum geometry and flow parameters of the beam dump. The generation and propagation of pressure waves due to rapid deposition of heat has also been analyzed.
机译:光束收集器是任何加速器系统必不可少的组成部分。它们通常位于光束传输系统的末端,旨在安全地吸收和耗散粒子能量。在拟议的国际直线对撞机(ILC)的第二阶段,电子束和正电子束分别加速到500 GeV(总共1 TeV)。每个束将具有2×10〜(10)个电子/正电子,并且2820个束形成一个束束序列,持续时间为0.95 ms,频率为4 Hz。平均波束功率将为18 MW,峰值功率为4.5 GW。 FLUKA代码用于确定光束在所有关键位置处的沉积功率。该数据构成了热力液压分析CFD代码的输入,用于详细的流量和热力评估。在所有关键区域都进行了2D和3D流动分析,以获得射束收集器的最佳几何形状和流动参数。还分析了由于热量的快速沉积而产生的压力波的产生和传播。

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