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欧洲核子研究组织超级质子同步加速器前端的屏蔽设计

Shielding design for the front end of the CERN SPL.

作者信息

Magistris Matteo, Silari Marco, Vincke Helmut

机构信息

CERN, 1211 Geneva 23, Switzerland.

出版信息

Radiat Prot Dosimetry. 2005;115(1-4):553-8. doi: 10.1093/rpd/nci145.

Abstract

CERN is designing a 2.2-GeV Superconducting Proton Linac (SPL) with a beam power of 4 MW, to be used for the production of a neutrino superbeam. The SPL front end will initially accelerate 2 x 10(14) negative hydrogen ions per second up to an energy of 120 MeV. The FLUKA Monte Carlo code was employed for shielding design. The proposed shielding is a combined iron-concrete structure, which also takes into consideration the required RF wave-guide ducts and access labyrinths to the machine. Two beam-loss scenarios were investigated: (1) constant beam loss of 1 Wm(-1) over the whole accelerator length and (2) full beam loss occurring at various locations. A comparison with results based on simplified approaches is also presented.

摘要

欧洲核子研究组织(CERN)正在设计一台束流功率为4兆瓦的2.2吉电子伏特超导质子直线加速器(SPL),用于产生中微子超级束流。SPL前端最初将每秒加速2×10¹⁴个负氢离子,加速到120兆电子伏特的能量。采用FLUKA蒙特卡罗代码进行屏蔽设计。提议的屏蔽是一种铁-混凝土组合结构,其中还考虑了所需的射频波导管道以及通往机器的通道迷宫。研究了两种束流损失情况:(1)在整个加速器长度上恒定的1瓦每米的束流损失,以及(2)在不同位置发生的全束流损失。还给出了与基于简化方法的结果的比较。

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