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Thermal analysis for the high duty cycle PIMS accelerator
Liu HC(刘华昌); Peng J(彭军); Ruan YF(阮玉芳); Fu SN(傅世年); Liu, HC; Peng, J; Ruan, YF; Fu, SN
2010
Source PublicationCHINESE PHYSICS C
Volume34Issue:7Pages:1005-1008
Corresponding Author[Liu Hua-Chang ; Peng Jun ; Ruan Yu-Fang ; Fu Shi-Nian] CAS, Inst High Energy Phys, Accelerator Ctr, Beijing 100049, Peoples R China
SubtypeArticle
AbstractTo develop the high power proton linear accelerator for the Accelerator Driven System (ADS) program, the preliminary design of the Pi mode accelerating structure (HMS) has been carried out. It is estimated that PIMS would heat up to 80 degrees C for low duty cycle (0.1%) without water-cooling, which is not acceptable, thus water-cooling is demanded. The structure stability for the high duty cycle or even for CW operation is crucially important for the ADS application. Therefore, thermal analysis with water-cooling for a high duty accelerator in our ADS research is performed to control the frequency shift caused by a temperature rise.
KeywordPIMS high duty cycle thermal analysis water-cooling
Subject AreaPhysics
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Indexed BySCI ; ADS
Language英语
WOS Research AreaPhysics
WOS SubjectPhysics, Nuclear ; Physics, Particles & Fields
WOS IDWOS:000279462900014
ADS Bibcode2010ChPhC..34.1005L
ADS URLhttps://ui.adsabs.harvard.edu/abs/2010ChPhC..34.1005L
ADS CITATIONShttps://ui.adsabs.harvard.edu/abs/2010ChPhC..34.1005L/citations
Citation statistics
Cited Times:0 [ADS]
Document Type期刊论文
Identifierhttp://ir.ihep.ac.cn/handle/311005/238879
Collection加速器中心
核技术应用研究中心
Affiliation中国科学院高能物理研究所
First Author AffilicationInstitute of High Energy
Recommended Citation
GB/T 7714
Liu HC,Peng J,Ruan YF,et al. Thermal analysis for the high duty cycle PIMS accelerator[J]. CHINESE PHYSICS C,2010,34(7):1005-1008.
APA 刘华昌.,彭军.,阮玉芳.,傅世年.,Liu, HC.,...&Fu, SN.(2010).Thermal analysis for the high duty cycle PIMS accelerator.CHINESE PHYSICS C,34(7),1005-1008.
MLA 刘华昌,et al."Thermal analysis for the high duty cycle PIMS accelerator".CHINESE PHYSICS C 34.7(2010):1005-1008.
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