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SELECTED PUBLICATIONS
[1] Fulong Zhao, Chenru Zhao, Hanliang Bo. Droplet phase change model and its application in wave-type vanes of steam generator [J]. Annals of Nuclear Energy. 2018, 111: 176-187.(SCI)
[2] Fulong Zhao, Chenru Zhao, Hanliang Bo. Numerical investigation of the separation performance of full-scale AP1000 steam-water separator [J]. Annals of Nuclear Energy. 2018, 111: 204-223. (SCI)
[3] Zhao Fulong, Bo Hanliang, Liu Qianfeng. Static droplet phase transformation model for variable pressure conditions. Journal of Tsinghua University (Science and Technology), 2016, 56(7): 759-764,771. (EI, in Chinese)
[4] Fulong Zhao, Chenru Zhao, Hanliang Bo. Single droplet phase transformation model during motion. Journal of Tsinghua University(Science and Technology), 2016, 56(11): 1213-1219. (EI, in Chinese)
[5] Fulong Zhao, Hanliang Bo. Characteristics analysis of droplet phase transformation during moving in swirl-vane separator [J]. Atomic Energy Science and Technology. 2017(12): 2183-2190. (EI, in Chinese)
[6] Fulong Zhao, Qianfeng Liu, Hanliang Bo. 2016. Parameter analysis of the static droplets phase transformation under the pressure variation condition, Charlotte, NC, America, 24th International Conference on Nuclear Engineering. (EI)
[7] Fulong Zhao, Chenru Zhao, Hanliang Bo, et al. Influence of working pressure and pressure difference on static droplet evaporation characteristics [C]. 25th International Conference on Nuclear Engineering, Shanghai: 2017. (EI)
[8] Fulong Zhao, Qianfeng Liu, Hanliang Bo. Stokes Number Analysis of the Moving Droplets in the Steam-Water Separator[C]. 26th International Conference on Nuclear Engineering, London: 2018. (EI)
[9] Fulong Zhao, Hanliang Bo, Zhou Ya, et al. A High Efficiency and Precision Interpolation Method for searching Fluid Field Information around Droplets in Sparse Two-phase Flow [C].17th International Topical Meeting on Nuclear Reactor Thermal Hydraulics (NURETH 17), Xi'an: 2017.
[10] Qianfeng Liu, Fulong Zhao, Hanliang Bo. Numerical simulation of the head of the direct action solenoid valve under the high temperature condition[C]. 24th International Conference on Nuclear Engineering, Charlotte: 2016. (EI)
[11] Qianfeng Liu, Fulong Zhao, Hanliang Bo, etc. Analysis of Parameter of Hydraulic Cylinder Motion for Control Rod Hydraulic Drive System [J]. Journal of Atomic Energy Science and technology. 2015, 49(zengkan1): 312-320. (EI, in Chinese)
[12] Sichao Tan, Fulong Zhao, Shaodan Li, etc. The transformation method of mass flux and mass transfer rate per volume at the interface in VOF model [J]. Journal of Harbin Engineering University. 2015, 36(3): 8. (EI, in Chinese)
[13] Zhao F, Guo J, Xie L, et al. Research and analysis of the thermal and control characteristics of the plate-type fuel assembly for the supercritical CO2 reactor[J]. Nuclear Engineering and Design. 2024, 416: 112757.
[14] Ming Y, Tian R, Zhao F, et al. Control Strategies and Transient Characteristics of a 5MWth Small Modular Supercritical CO2 Brayton-Cycle Reactor System[J]. Applied Thermal Engineering. 2023: 121302.
[15] Wang X, Zhao F, He Y, et al. Development and verification of helium–xenon mixture cooled small reaction system[J]. Progress in Nuclear Energy. 2023, 160: 104679.
[16] Guo J, Jin Y, Zhao F, et al. Modeling and program development of supercritical CO2 sub-channel based on Modelica language[J]. Applied Thermal Engineering. 2023: 120462.
[17] Xing L, Zhao F, Dong X, et al. Numerical investigation about radius ratio effect of helical tubes in the heat exchanger[J]. Nuclear Engineering and Design. 2023, 414: 112525.
[18] Ming Y, Liu K, Zhao F, et al. Dynamic modeling and validation of the 5 MW small modular supercritical CO2 Brayton-Cycle reactor system[J]. Energy Conversion and Management. 2022, 253: 115184.
[19] Ning K, He Y, Huang D, et al. Modelling research on the control scheme and control characteristic of a small gas-cooled reactor[J]. Progress in Nuclear Energy. 2022, 147: 104189.
[20] Lu R, Qiu Z, He Y, et al. Investigation of fluid-structure Interaction of fuel element in high speed and high temperature air cooled reactor[J]. Annals of Nuclear Energy. 2021, 160: 108400.
[21] He Y, Cheng K, Qiu Z, et al. Research on power flattening method and neutron characteristic analysis of a megawatt-class space gas-cooled fast reactor[J]. Annals of Nuclear Energy. 2021, 161: 108456.
[22] Huang D, Ning K, Zhao F, et al. Study on heat transfer characteristics of liquid droplet radiator: With VS without inter-droplets coupling[J]. Annals of Nuclear Energy. 2021, 156: 108199.
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