DOI QR코드

DOI QR Code

Flow performance of cryomodules in C-ADS Injector II

  • WAN, Yu-Qin (College of Petrochemical Engineering, Lanzhou University of Technology) ;
  • HAN, Yan-Ning (Institute of Modern Physics, Chinese Academy of Science) ;
  • Zhang, Jun-Hui (Institute of Modern Physics, Chinese Academy of Science) ;
  • Li, Chao (College of Petrochemical Engineering, Lanzhou University of Technology)
  • Received : 2022.03.22
  • Accepted : 2022.07.14
  • Published : 2022.09.30

Abstract

Two β=0.10 cryomodules are required for the China Accelerator Driven Subcritical System (C-ADS) injector II accelerator. Flow design is of great importance in the performance of cryomodules, including thermal design, flow distribution, pressure drop and so on. This paper will study convection heat transfer of helium and relation among the pipe diameter, mass flow rate and Reynolds number. Furthermore, the influence of flow geometries on pressure drop and flow distribution will also be done. It was found that the theoretical flow distribution were in good agreement with the experimental data.

Keywords

Acknowledgement

The authors would like to express gratitude to their colleagues in C-ADS cryogenic group.

References

  1. Wang ZhiJun, He Yuan, Liu Yong, Yue WeiMing, Yang XiaoLiang, Wu Wei, et al. "The design simulation of the superconducting section in the ADS injector II", in Chinese Physics C, vol. 36 (3), pp. 256-260, 2012. https://doi.org/10.1088/1674-1137/36/3/012
  2. Liu ShuHui, Wang ZhiJun, Yue WeiMing, Wan YuQin, Wang FengFeng, He Yuan. "Full Period Superconducting Section Physics Design for InjectorII of China-ADS", in Chinese Physics C, vol. 38 (11), pp. 84-87, 2014.
  3. Jia Huan, Yuan YouJin, Song MinTao, He Yuan, Luo Cheng, et al. "Design of the MEBT1 for C-ADS Injector II", in Proceedings of HB2012, pp. 115-117, 2012.
  4. Randall F. Barron. "Cryogenic Heat Transfer", Taylor&Francis, pp. 97-105, 1999.
  5. Yang ShiMin, Tao WenQuan. "Heat Transfer", Higher Education Press, pp. 243-255, 2006.
  6. Steven W. Van Sciver. "Helium Cryogenics", pp. 435-446, 2012.
  7. Wang JunYe. "Theory of flow distribution in manifolds", in Chemical Engineering Journal, vol. 168(2011), pp. 1331-1345, 2011. https://doi.org/10.1016/j.cej.2011.02.050
  8. Wang JunYe. "Pressure drop and flow distribution in parallelchannel configurations of fuel cells: U-type arrangement", in International Journal of Hydrogen Energy, vol. 33(2008), pp. 6339-6350, 2008. https://doi.org/10.1016/j.ijhydene.2008.08.020
  9. Wang JunYe. "Pressure drop and flow distribution in parallelchannel configurations of fuel cells: Z-type arrangement", in International Journal of Hydrogen Energy, vol. 35 (2010), pp. 5498-5509, 2010. https://doi.org/10.1016/j.ijhydene.2010.02.131
  10. Niu XiaoFei, Han YanNing, Wan YuQin, Zhang JunHui, Guo XiaoHong, Fu Jian, et al. "Design and construction of helium recovery and purification system for ADS", in Cryo.& Supercond. vol. 41(12), pp. 6-9, 2013.
  11. Wan YuQin, Bai Feng, Han YanNing, Zhang JunHui, Zhao YuGang, Zhang Peng, et al. "Half-wave resonator cryomodule design of ADS injectorII", in Journal of Engineering Thermophysics, vol. 40(1), pp. 36-40, 2019.
  12. Bai Feng, Niu XiaoFei, Wang XianJin, Hu JianJun, Hu Yongping, Zhang JunHui. "Thermal design and performance of taper cavity cryomodule for ADS Injector II", in Cryogenics, vol. 95, pp. 29-35, 2018. https://doi.org/10.1016/j.cryogenics.2018.08.007