APT项目常导/超导一体化大功率质子直线加速器

G. Lawrence, T. Wangler
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引用次数: 32

摘要

APT(氚生产加速器)项目的基线加速器设计是一个正导电超导质子直线加速器,在1700兆电子伏特下产生170兆瓦的连续光束功率。与以前的全NC直线加速器设计相比,NC/SC直线加速器提供了显著的节能和更低的运营和资本成本。它允许一个更大的孔径在高能量,并允许更大的操作灵活性。设计方案已通过高级别技术评审,并在概念设计报告中发表。高能部分是采用椭圆型铌腔的超导(SC)射频直线加速器,而低能部分是由铜腔构成的正常导电(NC)直线加速器。这提供了一个集成的加速器设计,使两种技术在其适当的应用领域得到最佳利用。NC直线加速器由注入器、RFQ、CCDTL和CCL组成,可将100毫安的光束加速到217兆电子伏。SC直线加速器分为两个部分,针对不同的光束速度跨度进行了优化,每个部分由包含5胞腔的低温模块和FODO聚焦晶格中的SC单线态四边形组成。替代SC直线加速器设计正在研究中,该设计采用位于低温模块之间的传统四极双重聚焦晶格。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated normal-conducting/superconducting high-power proton linac for the APT project
The baseline accelerator design for the APT (Accelerator Production of Tritium) Project is a normalconducting-superconducting proton linac that produces a CW beam power of 170 MW at 1700 MeV. Compared with the previous all-NC linac design, the NC/SC linac provides significant power savings and lower operating and capital costs. It allows a much larger aperture at high energies, and permits greater operational flexibility. The design has been approved by high-level technical panels and is published in a Conceptual Design Report. The high-energy portion is a superconducting (SC) RF linac employing elliptical-type niobium cavities, while the low-energy portion is a normal-conducting (NC) linac constructed from copper cavities. This provides an integrated accelerator design that makes optimum use of the two technologies in their appropriate regions of application. The NC linac, which consists of an injector, RFQ, CCDTL, and CCL, accelerates a 100-mA beam to 217 MeV. The SC linac is built in two sections optimized for different beam velocity spans, with each section made up of cryomodules containing 5-cell cavities and SC singlet quads in a FODO focusing lattice. Alternate SC linac designs are being studied that employ a doublet focusing lattice using conventional quadrupoles located between cryomodules.
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