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电话:
邮箱:hehsieh@xmu.edu.cn
研究方向: 纳米流体研制与应用、核电厂安全分析、核电厂热工水力、电子器件散热设计、半导体制程与良率分析
研究生領域:
990100先进能源 - 智慧能源与能源安全
0802J2能源工程与技术 - 能效工程
085803核能工程
教学课程:
反应堆工程与设计(研究生)、控制仪表及装置(本科生)、核能系统与设备(本科生)
2018.01至今 ok1122诸侯快讯网 副教授
2016.11-2017.12 台湾清华大学原子科学技术发展中心 博士后研究
2016.04-2016.11 公元信息股份有限公司 项目经理
2012.09-2016.04 台湾清华大学原子科学技术发展中心 研究助理
2009.02-2012.09 台湾清华大学能源与环境中心 研究助理
2008.11-2009.02 奇美电子股份有限公司 制程整合工程师
2007.07-2008.11 世界先进积体电路股份有限公司 产品工程师
2009.09-2016.04 台湾清华大学 核子工程与科学研究所 博士
2005.09-2007.06 台湾云林科技大学 光电工程研究所 硕士
2001.09-2005.06 台湾义守大学 电子工程学系 学士
2022 第13届核子反应器热流运转与安全国际会议NUTHOS-13技术委员会委员及分论坛主席。
2021年中国电机工程学会海峡两岸能源电力发展论坛优秀科技论文。
2019年获邀参与海峡论坛新能源分论坛“海峡两岸能源互联网技术论坛”,并于大会专题演讲。
2018年获选台湾核能学会「核燃料及再循环利用学术委员会」委员。
2017年获选斐陶斐荣誉学会(The Phi Tau Phi Scholastic Honor Society)荣誉会员。
2016年台湾清华大学核子工程与科学研究所NE75优秀核工博士候选人奖学金。
2014年美国沸水式反应堆业主(BWROG)紧急与严重事故应变导则(EPG/SAG)制定委员。
2014年International Symposium on Frontiers of Technology for the Future : Low Carbon Energy and Life (FoTEL),荣获优秀论文奖。
目前已发表知名国际期刊与国际会议论文共70余篇,且担任国际期刊Nuclear Engineering and Design、Nuclear Science and Techniques、Advances in Mechanical Engineering、International Journal of Heat and Mass Transfer、ASME Heat Transfer论文审稿人。
2022核子反应器热流运转与安全NUTHOS-13国际会议。
2018美国核能协会American Nuclear Society冬季会议。
2017日本原子力规制委员会之核能电厂除役精进技术会议。
2017美国核子管制委员会(NRC)之核能电厂除役管制审查技术会议。
2017美国内华达大学拉斯韦加斯分校UNLV机械工程系访学 。
2014美国PWROG EPG/SAG Rev.3. 压水式反应堆紧急与严重事故应变导则会议。
2014美国BWROG EPG/SAG Rev.3. 沸水式反应堆紧急与严重事故应变导则会议。
2013美国麻省理工学院MIT核子工程系暨核子反应器实验室访学。
2010美国芝加哥Nexus Engineering工程顾问公司 – NFPA 805 & NUREG/CR-6850交流。
2009美国电力研究所EPRI - Fire PRA & Circuit Analysis交流。
中国核动力研究设计院 : 安全壳泄漏通道气溶胶滞留现象的机理研究。
中广核研究院有限公司 : 严重事故后裂变产物机理研究技术咨询服务。
中广核仿真公司 : 宁德核电厂一期3&4机组严重事故模拟机第三方验证测试服务。
上海核工程研究设计院有限公司 : 核电大数据分析算法测试。
福建宁德核电有限公司 : 宁德核电MTA知识体系与考核试题库建设服务项目。
期刊论文
[1] Yuan Gao, Huai-En Hsieh*, Zhibo Zhang, Shiqi Wang, Zhe Zhou,” Experimental study on pool boiling heat transfer characteristics of TiO2 nanofluids on a downward-facing surface”, Progress in Nuclear Energy, 153, 104402, (2022).
[2] Shiqi Wang, Huai-En Hsieh*, Zhibo Zhang, Yuan Gao, Zhe Zhou and Jia Gao, “The investigation of heat transfer enhancement by using different mixture conditions of graphene nanofluids on a downward facing surface”, KERNTECHNIK, 87(4): 484–494, 2022.
[3] Zhibo Zhang, Huai-En Hsieh*, Yuan Gao, Shiqi Wang and Zhe Zhou, “Heat Transfer Enhancement Using Different SiO2 Nanofluid Mixing Conditions on a Downward-Facing Heating Surface”, Nuclear Technology, vol. 208, 1605–1618, 2022.
[4] Zhibo Zhang, Huai-En Hsieh*, Yuan Gao, Shiqi Wang, Jia Gao and Zhe Zhou, “Pool boiling performance of oxide nanofluid on a downward-facing heating surface”, KERNTECHNIK, 87(2): 147–157, 2022.
[5] Yuan Gao, Huai-En Hsieh*, Huifang Miao, Zhe Zhou, and Zhibo Zhang, “Investigating of the Heat Transfer Characteristics of Impinging Flow on a Downward-Facing Surface”, Nuclear Technology, vol. 208 · 222–231, 2022.
[6] ZHOU Zhe, XIE Huaien*,MIAO Huifang,GAO Yuan,ZHANG Zhibo, “Effects of micro-nanofluids of Al2O3 on boiling heat transfer in downward-facing heating”, Journal of Xiamen University (Natural Science), Vol.61 No.1, 80-87, 2022.
[7] Zhe Zhou, Yuan Gao, Huai-En Hsieh*, Huifang Miao and Zhibo Zhang, “Experimental investigation on pool boiling for downward facing heating with different concentrations of Al2O3 nanofluids”, KERNTECHNIK, 86, 2, page 1 –10, (2021).
[8] Huai-En Hsieh*, Hui-Fang Miao, Wen-Yu Wang, Yen-Cheng Liu, Bau-Shei Pei, “The RESRAD Code Applications for Radiological Safety Analysis of Nuclear Power Plants Decommissioning”, Transactions of the American Nuclear Society, vol.120, page 13-16, (2019).
[9] Yifen Chen, Jianxiang Zheng, Huai-En Hsieh, Yichun Wu, “Nuclear Power Technology Training Based on Mixed Reality Technology”, Transactions of the American Nuclear Society, vol.120, page 32-33, (2019).
[10] Zhi’ao Huang, Huifang Miao, Huai-En Hsieh, Ning Li, “Analysis of Core Coolability During a Severe Accident with Delayed External Injection for CPR1000”, Transactions of the American Nuclear Society, vol.120, page 1159-1161, (2019).
[11] Jun Chen, Huifang Miao, Huai-En Hsieh, Zhi'ao Huang, Xingwei Shi, “A Study of Passive Features of a Small Modular Reactor”, Transactions of the American Nuclear Society, vol.120, page 677-679, (2019).
[12] Z. Huang, H. Miao, H. Hsieh, N. Li and D. Gu, "Application of two alternative shutdown severe accident management guideline (SSAMG) entry conditions for CPR1000", KERNTECHNIK 84 (2019), 1, page 22–28.
[13] Huai-En Hsieh*, Mei-Shiue Chen, “Thermal Effects to the Transmission Signals of the Nuclear Grade Optical Fibers”, Transactions of the American Nuclear Society, vol.119, page 898-899, (2018).
[14] Hsieh Huai-En*, Chen Mei-Shiue, Yen-Cheng Liu, “A New CHF Prediction Correlation by Different Inclined Angles on a Downward Facing Surface”, Transactions of the American Nuclear Society 117 (2017): 1740.
[15] Hsieh Huai-En*, Chen Mei-Shiue, Chen Yi-Tung, Chen Jyun-Wei, Lin Wei-Keng, Pei Bau-Shei, “A CHF Correlation and Flow Pattern Observation on a Downward-Facing Boiling Surface”, Proceedings of The 20th Pacific Basin Nuclear Conference - Chapter 2, Springer Science, (2017).
[16] Huai-En Hsieh*, Mei-Shiue Chen, Wei-Keng Lin, Bau-Shi Pei, "The Observation of Boiling Heat Transfer Phenomenon on a Downward Facing Surface", Transactions of the American Nuclear Society, vol.112, Pages 919-921, (2015).
[17] Huai-En Hsieh*, Yuh-Ming Ferng, Mei-Shiue Chen, Bau-Shi Pei, "Experimental study on the CHF characteristics with different coolant injection conditions and degassing effects on a downward-facing plane", Annals of Nuclear Energy, 76 (2015) 48–53.
[18] Huai-En Hsieh*, Mei-Shiue Chen, Jyun-Wei Chen, Wei-Keng Lin and Bau-Shi Pei, "Flow impinging effect of critical heat flux and nucleation boiling heat transfer on a downward facing heating surface", KERNTECHNIK 80 (2015) 2, p124-132.
[19] Mei-Shiue Chen, Huai-En Hsieh*, Zhi-Yu Zhang and Bau-Shi Pei, "Experimental investigation of thermal mixing phenomena in a tee pipe", KERNTECHNIK 80 (2015) 2, p.116-123.
[20] Mei-Shiue Chen, Huai-En Hsieh, Yuh-Ming Ferng, Bau-Shi Pei, "Experimental observations of thermal mixing characteristics in T-junction piping", Nuclear Engineering and Design 276 (2014) 107–114.
[21] Hsieh, H.E.*, Ferng, Y.M., Chen, M.S., & Pei, B.S., "Experimental Measurement with CHF Characteristics on a Downward-Facing Plane", Transactions of the American Nuclear Society 107 (2012): 1361.
[22] M.S. Chen, Y.M. Ferng, H.E. Hsieh, B.S. Pei, "Experimental Observations of Thermal Mixing Characteristics in T-junction Piping." Transactions of the American Nuclear Society 107 (2012): 1409.
[23] Huai-En Hsieh*, Yuh-Ming Ferng, Bau-Shi Pei, “Study of heat transfer characteristics at the ex-vessel bottom”, Transactions of the American Nuclear Society, 105:924-925, (2011).
[24] Huai-En Hsieh*, Yuh-Ming Ferng, Wen-Sheng Hsu, Bau-Shi Pei, "The Study of Optical Fibers Signal Loss by Thermal Effect for Advanced NPPs", Transactions of the American Nuclear Society;103;508-509 (2010).
[25] Jian-Ji Huang, Yan-Kuin SU, Ming-Hua Chang, Tsung-Eong Hsieh, Bohr-Ran Huang, Shun-Hsi Wang, Wen-Ray Chen, Yu-Sheng Tsai, Huai-En Hsieh, Mark O. Liu, And Fuh-Shyang Juang, “Lifetime Improvement Of Organic Light Emitting Diodes Using Lif Thin Film And UV Glue Encapsulation”, Japanese Journal Of Applied Physics Vol. 47, No. 7, (2008).
[26] Chen-Ming Chen, Ming-Hua Chung, Tsung-Eong Hsieh, Bohr-Ran Huang, Huai-En Hsieh, Fuh-Shyang Juang, Yu-Sheng Tsai, Mark O. Liu, Jen-Lien Lin, “Ultraviolet-assisted synthesis of encapsulating adhesives and their application for lifetime improvement of organic light emitting diodes”, Current Applied Physics 9 (2009) 746–749.
[27] Chen-Ming Chen, Ming-Hua Chung, Tsung-Eong Hsieh, Bohr-Ran Huangb, Huai-En Hsieh, Fuh-Shyang Juang, Yu-Sheng Tsai, Mark O. Liu, Jen-Lien Lin, “Electroluminescent properties of color/luminance tunable organic light emitting diodes and their lifetime enhancement with encapsulation”, Materials Science and Engineering B 153 (2008) 100–105.
[28] Ming-Hua Chang, Tsung-Eong Hsieh, Bohr-Ran Huang, Huai-En Hsieh, Fuh-Shyang Juang, Yu-Sheng Tsai, Mark O. Liu, Jen-Lien Lin, “A study of ultraviolet-curable organic/inorganic hybrid nano composites and their encapsulating applications for organic light emitting diodes” Materials Chemistry and Physics (2009).
[29] 许文胜、冯玉明、白宝实、林子仁、陈得诚、 郑珠钧、匡湘玮、李宜娟、谢怀恩、陈孟超,"核一厂火警后安全停机电路分析及整体火灾风险判定工具之建立",台电工程月刊 755 期。
[30] 许文胜、冯玉明、白宝实、李宜娟、郑珠钧、林慧珍、谢怀恩、陈虹倍、李明聪,"建立核二厂整体火灾风险判定程序及火警后安全停机电路分析",台电工程月刊 770 期。