Journal of Lanzhou University of Technology ›› 2023, Vol. 49 ›› Issue (3): 60-66.

• Mechanical Engineering and Power Engineering • Previous Articles     Next Articles

Thermal-structure coupling analysis of neutron target system of beryllium palladium copper composite based on fluent

ZHANG jing1,2, ZHOU Zong-tuan3, WANG Sen3, YANG Long-fei, LIU Wen-bo1,2   

  1. 1. Lanzhou Lanshi Group Co. Ltd., Energy Equipment Engineering Research Institute, Lanzhou 730314, China;
    2. Lanzhou Lanshi Energy Equipment Engineering Research Institute Co. Ltd., Lanzhou 730314, China;
    3. Lanzhou Lanshi Heat Exchange Equipment Co. Ltd., Lanzhou 730314, China
  • Received:2022-03-17 Online:2023-06-28 Published:2023-07-07

Abstract: In the field of electronic devices, the heat dissipation of high heat flux electronic devices has become an important factor restricting the development of high-tech. The neutron target system with simple structure can not meet the heat dissipation requirements of some kinds of electronic devices. Therefore, a new and efficient microchannel beryllium-palladium copper composite neutron target system is designed and developed to solve the heat dissipation problem of beryllium-palladium copper composite using liquid cooling technology. The flow field and thermal stress distribution of beryllium-palladium copper composite neutron target system with different structures were compared and analyzed by using the turbulence model in ANSYS Fluent and Static Structural simulation software, and the microchannel beryllium-palladium copper composite neutron target system with compact structure and good heat transfer performance was optimized.

Key words: beryllium palladium copper composite, neutron target system, flow field simulation, fluid-thermal-structure coupling, thermal stress

CLC Number: