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【SCI文章】
[11] Liang H., Erkan, N., Wang, K., Sharma AK, Suzuki, S., 2023.Numerical simulation of aerosol generation by cutting fuel debris and aerosol removal by spray droplets during Fukushima decommissioning. Progress in Nuclear Energy, https://doi.org/10.1016/j.pnucene.2023.104667
[10] Sharma AK, Liang H, Xu RC, Ozdemir E., et al., 2023. Radioactive Aerosol Control and Decontamination in the Decommissioning of the Fukushima Daiichi Nuclear Power Station. Nuclear Technology. doi.org/10.1080/00295450.2023.2186675.
[9]Ma, Q., Zhou, Y., Gu, H., Sun, Z., Yu, X., & Liang, H. (2023). Experimental research on aerosol scrubbing characteristics under steam-air mixture submerged jet condition. Progress in Nuclear Energy, 159, 104645.
[8] Ma, Q., Zhou, Y., Gu, H., Sun, Z., Yu, X., & Liang, H. 2022. Experimental research on aerosol scrubbing characteristics in the submerged jet under high pool pressure. Powder Technology, 118170. (JCR-Q1)
[7] Wang, K., Hong, Z.H., Liang, H., Junya I., Cheng, S.B., Okamoto, K. 2023. Experimental investigation on the characteristics of bubble growth and slide on a downward-facing heater surface in flow boiling. International Journal of Thermal Sciences, 184, 108008. (JCR-Q1)
[6] Liang, H.*, Erkan, N., Zhou, Q., Porcheron, E., Gelain, T., and Suzuki, S. 2021. Effect of Vessel Size Scale on the Aerosol Spray Scavenging Efficiency with Water Mist. Journal of Aerosol Science, p.105853. (JCR-Q1)
[5] Liang, H.*, Zhou, Q., Erkan, N., Suzuki, S. 2021. Effect of Spray Properties on Aerosol Scavenging Efficiency with Water Mist. Aerosol Science & Technology, pp.1-19. (JCR-Q1)
[4] Wang, K., Liang, H.*, Li, C.Y., Erkan, N. and Okamoto, K., 2021. CHF enhancement for a finned surface in flow boiling with explanations based on vapor observations. Progress in Nuclear Energy, 138, p.103799. (JCR-Q1)
[3] Liang, H.*, Zhou, Q., Erkan, N., Suzuki, S. 2020. Improvement of Aerosol Spray Scavenging Efficiency with Water Mist. Journal of Aerosol Science, 153, p.105697. (JCR-Q1)
[2] Liang, H.*, Erkan, N., Solans, V. and Suzuki, S., 2020. Numerical simulation and validation of aerosol particle removal by water spray droplets with openFOAM during the Fukushima Daiichi Fuel Debris Retrieval. Frontiers in Energy Research, 8, p.102. (JCR-Q2)
[1] Liang, H. and Duan, R.Q., 2019. Effect of Lateral End Plates on Flow Crossing a Yawed Circular Cylinder. Applied Sciences, 9(8), p.1590. (JCR-Q2)
【ESCI文章】
[1] Wang, K., Liang, H.*, Inoue, J., Erkan, N. and Okamoto, K., 2021. Radiation-induced Surface Wettability Enhancement of an Indium Tin Oxide and Titanium Oxide Film-Coated Sapphire. Journal of Nuclear Engineering and Radiation Science.
【国内、国际学术会议】
[11] 梁辉, Erkan, N., Suzuki, S., 周艳民,谷海峰,2022. 气溶胶喷淋去除的实验研究和数值模拟,中国核学会核反应堆热工流体力学分会第二届学术年会.
[10] Liang, H., Erkan, N., Wang, K., Sharma, A.K., Suzuki, S., 2022. Numerical Simulation of Aerosol Generation and Aerosol Spray Scavenging during Fukushima Daiichi Decommissioning. ICONE29. Aug 2022.
[9] Liang, H., Hu, Z.W., Cao, X.X., 2022. Influence of Low Coolant Level on Shell-Side Heat Transfer Performance in a Tubular Heat Exchanger. ICONE29. Aug 2022.
[8] Liang, H., Zhou, Q., Erkan, N., Suzuki, S., Leblois, Y., Gelain, T. and Porcheron, E., 2020, August. Effect of Containment Vessel’s Size Scale on the Aerosol Spray Scavenging Efficiency With Water Mist. In International Conference on Nuclear Engineering (Vol. 83761, p. V001T04A006). American Society of Mechanical Engineers.
[7] Liang, H., Zhou, Q., Erkan, N., Suzuki, S. 2019. Experimental and numerical investigation of aerosol
scavenging by water spray droplets. XJTU-UT-SJTU symposium. Shanghai, China (Best paper award).
[6] Zhang, X., Erkan, N., Okamoto, K. and Liang, H., 2019. Effects of Ultrafine Bubbles on the Aerosols Removal Efficiency due to Pool Scrubbing. In The Proceedings of the International Conference on Nuclear Engineering (ICONE27) 2019.27 (p. 2022). The Japan Society of Mechanical Engineers.
[5] Liang, H., Zhou, Q., Erkan, N., Suzuki, S. 2019. Improvement of Aerosol Spray Scavenging Efficiency with Water Mist. ICONE 27, Tsukuba, Japan. (Oral presentation).
[4] Liang, H., Jiang, S.Y. Duan, R.Q., 2015. Effect of End Plate on the Flow Crossing a Yawed Circular Cylinder. NURETH-16, Chicago, USA. pp.8492-8505.
[3] Liang, H., Jiang, S.Y. Duan, R.Q., 2015. Spanwise characteristics of flow crossing a yawed circular cylinder of finite length. Procedia Engineering, 126, pp.83-87.
[2] 梁辉,姜胜耀,段日强.有限长倾斜圆柱绕流的展向特性研究[A]. 第十四届全国反应堆热工流体学术会议暨中核核反应堆热工水力技术重点实验室2015年度学术年会论文集[C]. 2015:6.
[1] 梁辉,曹夏昕.低冷却剂液位对管束式换热器壳侧换热性能的影响. 第九届全国新堆与研究堆学术会议 – 口头报告.