• NUCLEAR TECHNIQUES
  • Vol. 46, Issue 1, 010604 (2023)
Yushuang CHEN1, Jian TIAN1,*, Mengting DING1,2, Yang ZOU1, and Naxiu WANG1
Author Affiliations
  • 1Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.11889/j.0253-3219.2023.hjs.46.010604 Cite this Article
    Yushuang CHEN, Jian TIAN, Mengting DING, Yang ZOU, Naxiu WANG. Temperature field and stress field analysis of molten salt U-tube heat exchanger based on fluid-thermal-solid coupling method[J]. NUCLEAR TECHNIQUES, 2023, 46(1): 010604 Copy Citation Text show less
    References

    [1] LI Ding, WANG Huaming, YU Jiangyong et al. The numerical simulation of cracking between heat exchanger tube and tube plate based on XFEM method[J]. China Special Equipment Safety, 31, 61-64(2015).

    [2] WANG Siying, LI Weihong. Optimization design of tube plate for tube and tube shell heat exchanger based on finite element[J]. Technology & Development of Chemical Industry, 46, 55-57(2017).

    [3] LENG Jitong, Hong LYU, ZHANG Yaohui et al. Analysis of temperature field and thermal stress in a fixed tube-sheet heat exchanger[J]. Journal of Beijing University of Chemical Technology (Natural Science Edition), 31, 104-107(2004).

    [4] Chen H F, Ponter A R S. Integrity assessment for a tubeplate using the linear matching method[J]. International Journal of Pressure Vessels and Piping, 81, 327-336(2004).

    [5] Merah N, Al-Zayer A, Shuaib A et al. Finite element evaluation of clearance effect on tube-to-tubesheet joint strength[J]. International Journal of Pressure Vessels and Piping, 80, 879-885(2003).

    [6] MIAO Hongkang, CHEN Yushuang, Liushuai LYU et al. Numerical simulation study on heat transfer characteristics of new heat exchange fins[J]. Nuclear Techniques, 41, 100601(2018).

    [7] MIAO Hongkang, CHEN Yushuang, Liushuai LYU et al. Flow-induced vibration analysis of heat transfer tube based on two-way fluid-structure interaction[J]. Nuclear Techniques, 41, 050602(2018).

    [8] LIU Chen, LI Qiming, ZOU Yang et al. Optimization of structural parameters and thermal-hydraulic numerical simulation of printed circuit heat exchanger with airfoil fins[J]. Nuclear Techniques, 44, 110602(2021).

    [9] YAO Kai, ZHANG Fangju, HOU Cong. Thermal stress analysis of plate heat exchanger based on fluid-thermo-solid coupling[J]. Jiangsu Aviation, 4, 24-26(2016).

    [10] CAI Hongwei. Thermal stress analysis and structural optimization of fixed tube-sheet heat exchanger[D](2018).

    [11] Wang R. The numerical simulation of heat exchange tube bundle based on FSI[C](2015).

    [12] GU Fang, CUI Guoqi, HUANG Jinsong et al. Thermal stress analysis for the heat exchanger based on fluid-solid-heat coupling[J]. Chemical Equipment Technology, 32, 42-45(2011).

    [13] LI Yingkai. The research on the design method of micro heat exchanger based on thermal fluid-structure interaction[D](2015).

    [14] REN Zepei[M]. Heat convection, 137-138(1995).

    [16] JIN Yuan, CHENG Jinhui, WANG Kun et al. Research on thermo-physical properties of several typical molten salt coolants[J]. Nuclear Techniques, 39, 050604(2016).

    Yushuang CHEN, Jian TIAN, Mengting DING, Yang ZOU, Naxiu WANG. Temperature field and stress field analysis of molten salt U-tube heat exchanger based on fluid-thermal-solid coupling method[J]. NUCLEAR TECHNIQUES, 2023, 46(1): 010604
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