何玉荣
近期热点
资料介绍
个人简历
何玉荣,哈尔滨工业大学,能源科学与工程学院,工学博士。已在国内外期刊发表和录用SCI论文100余篇,发表论文总计SCI他引4003次,单篇最高SCI他引496次,H因子为31(去除自引)。于2004年获得荷兰惠更斯奖学金,2006年获得哈尔滨工业大学校优秀博士学位论文,2007年获全国优秀博士学位论文提名,2008年入选教育部新世纪优秀人才支持计划,同年,获黑龙江省留学人员报国奖,2013年获国家自然科学基金委优秀青年基金,2014年获哈尔滨市科技创新人才研究专项基金杰出青年基金,2016年获得黑龙江省杰出青年基金,2018年获校青年科学家工作室资助,入选2018年度国家高层次人才计划。教育经历1995.09-1999.07,哈尔滨工业大学,能源科学与工程学院,热能工程,工学学士1999.09-2001.07,哈尔滨工业大学,能源科学与工程学院,热能工程,工学硕士2001.09-2004.08,哈尔滨工业大学,能源科学与工程学院,热能工程,工学博士工作经历2003.07-2004.11哈尔滨工业大学,能源科学与工程学院,助教2004.11-2007.06哈尔滨工业大学,能源科学与工程学院,讲师2004.09-2005.07荷兰屯特大学(Univeristy of Twente),访问学者(Visiting Scholar)2005.09-2007.06英国利兹大学(University of Leeds),博士后研究员(Research Fellow)2007.07-2012.12哈尔滨工业大学,副教授2008.05-今哈尔滨工业大学,博导2008.09-2013.02能源科学与工程学院能源与环境工程中心副主任2013.03-2015.01能源科学与工程学院能源与环境工程研究所所长2015.01-2020.04能源科学与工程学院,副院长2012.12-今哈尔滨工业大学,教授荣誉称号· 2019年,校优秀思想政治工作者· 2016年,大学生创新创业教育活动优秀指导教师· 2014年度,黑龙江省高校师德先进个人· 2013年,首届国家开发银行科技创新奖教金· 2013年度,Powder Technology期刊杰出审稿人· 2011年,哈尔滨工业大学优秀专兼职学生工作者· 2010年,哈尔滨工业大学校优秀教师· 2008年,第三届黑龙江省留学人员报国奖· 2008年,哈尔滨工业大学优秀专兼职学生工作者· 2007年,全国优秀博士学位论文提名· 2006年,哈尔滨工业大学校优秀博士论文· 2004年,荷兰惠更斯奖学金研究领域
"稠密气固两相流体动力学模型开发新型储能材料开发及储能过程强化先进功能热流体能量转换与输运微纳结构太阳能光-热/电转换及应用"近期论文
2020年1. Lei Shi, Yanwei Hu, Yurong He*, Magneto-responsive thermal switch for remote-controlled locomotion and heat transfer based on magnetic nanofluid, Nano Energy, 2020, 71: 104582.2. Lei Shi, Yanwei Hu, Yijie Bai, Yurong He*, Dynamic tuning of photo-thermal conversion and energy storage via magnetic phase change composite, Applied Energy, 2020, 263: 114570.3. Yanwei Hu, Borui Zhang, Kaiyu Tan, Yurong He*, Jiaqi Zhu, Regulation of natural convection heat transfer for SiO2-Solar salt nanofluids by optimizing rectangular vessels design, Asia-Pacific Journal of Chemical Engineering, 2020, accepted. 4. Tianyu Wang, Yurong He*, Anxing Ren, Qinghua Gao, Region-dependent analysis on particle behaviors in a spout-fluidized bed using the discrete hard sphere particle method, The Canadian Journal of Chemical Engineering, 2020, accepted. 5. Sheng-Nan Yan, Tian-Yu Wang, Tian-Qi Tang, An-Xing Ren, Yu-Rong He*, Simulation on hydrodynamics of non-spherical particulate system using a drag coefficient correlation based on artificial neural network, Petroleum Science, 2020, https://doi.org/10.1007/s12182-019-00411-2.6. An-Xing Ren, Tian-Yu Wang, Tian-Qi Tang, Yu-Rong He*, Non-spherical particle mixing behaviors by spherical inert particles assisted in a fluidized bed, Petroleum Science, 2020, https://doi.org/10.1007/s12182-019-00401-4.7. Lei Shi, Yurong He*, Yanwei Hu, Xinzhi Wang, Baocheng Jiang, Yimin Huang, Synthesis of size-controlled hollow Fe3O4 nanospheres and their growth mechanism, Particuology, In press, corrected proof, Available online.8. Tianyu Wang, Tianqi Tang, Qinghua Gao, Zigui Yuan, Yurong He*, Experimental and numerical investigations on the particle behaviours in a bubbling fluidized bed with binary solids, Powder Technology, 2020, 362: 436-449.9. Tianqi Tang, Tianyu Wang, Qinghua Gao, Yurong He*, Flow and heat mass performances of wet particle drying process based on liquid volume-varying bridge force, International Journal of Heat and Mass Transfer, 2020, 148, 119037. 10. Lei Shi, Xinzhi Wang, Yanwei Hu, Yurong He*, Investigation of photocatalytic activity through photo-thermal heating enabled by Fe3O4/TiO2 composite under magnetic field, Solar Energy, 2020, 196: 505-512. 11. Weijie Yin, Shuai Wang*, Kai Zhang, Yurong He, Investigation of oxygen-enriched biomass gasification with TFM-DEM hybrid model, Chemical Engineering Science, 2020, 211, 115293. 12. 邰曈,王彪,唐天琪,何玉荣*,颗粒与壁面间滚动摩擦对进料装置颗粒流动特性影响,中国科学院大学学报,2020,录用。13. 刘丹,汪新智,何玉荣*,随机四参数法生成多孔介质及渗流模拟,工程热物理学报,2020,录用。- 2019年 1. Meijie Chen, Yurong He*, Yanwei Hu, Jiaqi Zhu, Local heating control of plasmonic nanoparticles for different incident lights and nanoparticles, Plasmonics, 2019, 14(6): 1893-1902. 2. Meijie Chen, Yurong He*, Qin Ye, Jiaqi Zhu, Tuning plasmonic near-perfect absorber for selective absorption applications, Plasmonics, 2019, 14(6): 1357-1364. 3. Jian Huang, Yurong He*, Yanwei Hu, Xinzhi Wang, Coupled photothermal and joule-heating process for stable and efficient interfacial evaporation, Solar Energy Materials and Solar Cells, 2019, 203, 110156.4. Gong Cheng, Xinzhi Wang, Xing Liu, Yurong He*, Boris V. Balakin, Enhanced interfacial solar steam generation with composite reduced graphene oxide membrane, Solar Energy, 2019, 194: 415-430. 5. Tianqi Tang, Yurong He*, Anxing Ren, Tianyu Wang, Experimental study and DEM numerical simulation of dry/wet particle flow behaviors in a spouted bed, Industrial & Engineering Chemistry Research, 2019, 58(33): 15353-15367.6. Lei Shi, Yanwei Hu, Yurong He*, Magnetocontrollable convective heat transfer of nanofluid through a straight tube, Applied Thermal Engineering, 2019, 162, 114220.7. Yurong He*, Yanwei Hu, Haoran Li, An Ag@TiO2/ethylene glycol/water solution as a nanofluid-based beam splitter for photovoltaic/thermal applications in cold regions, Energy Conversion and Management, 2019, 198: 111838.8. Lei Shi, Yurong He*, Yanwei Hu, Xinzhi Wang, Controllable natural convection in a rectangular enclosure filled with Fe3O4@CNT nanofluids, International Journal of Heat and Mass Transfer, 2019, 140: 399-409. 9. Shengnan Yan, Yurong He*, Tianqi Tang, Tianyu Wang, Drag coefficient prediction for non-spherical particles in dense gas–solid two-phase flow using artificial neural network, Powder Technology, 2019, 354: 115-124. 10. Meijie Chen, Yurong He*, Jiaqi Zhu, Quantifying and comparing the near-field enhancement, photothermal conversion, and local heating performance of plasmonic SiO2@Au core-shell nanoparticles, Plasmonics, 2019, 14(4): 1019-1027. 11. Yanwei Hu, Yurong He*, Hongda Gao, Zhenduo Zhang, Forced convective heat transfer characteristics of solar salt-based SiO2 nanofluids in solar energy applications, Applied Thermal Engineering, 2019, 155: 650-659.12. Meijie Chen, Yurong He*, Qin Ye, Xinzhi Wang, Yanwei Hu, Shape-dependent solar thermal conversion properties of plasmonic Au nanoparticles under different light filter conditions, Solar Energy, 2019, 182: 340-347. 13. Yanwei Hu, Yurong He*, Zhenduo Zhang, Dongsheng Wen, Enhanced heat capacity of binary nitrate eutectic salt-based silica nanofluid for solar energy storage, Solar Energy Materials and Solar Cells, 2019, 192: 94-102. 14. Meijie Chen, Yurong He*, Yanwei Hu, Jiaqi Zhu, Local temperature control of hybrid plasmonic nano-antennas, Journal of Quantitative Spectroscopy and Radiative Transfer, 2019, 225: 50-57. 15. Meijie Chen, Yurong He*, Qin Ye, Zhenduo Zhang, Yanwei Hu, Solar thermal conversion and thermal energy storage of CuO/Paraffin phase change composites, International Journal of Heat and Mass Transfer, 2019, 130: 1133-1140. 16. Jian Huang, Yurong He*, Meijie Chen, Xinzhi Wang, Separating photo-thermal conversion and steam generation process for evaporation enhancement using a solar absorber, Applied Energy, 2019, 236: 244-252. 17. Haoran Li, Yurong He*, Changhong Wang, Xinzhi Wang, Yanwei Hu, Tunable thermal and electricity generation enabled by spectrally selective absorption nanoparticles for photovoltaic/thermal applications, Applied Energy, 2019, 236: 117-126. 18. Haoran Li, Yurong He*, Xinzhi Wang, Dan Liu, Ziyu Liu, Bilayer films using broadband nanoparticles and mesoporous TiO2 for high efficient dye sensitized solar cells, Journal of Alloys and Compounds, 2019, 773: 743-751.19. Kai Zhang, Shuai Wang*, Yuxiang Tang, Yurong He, Prediction of segregation behavior of binary mixture in a pulsed fluidized bed, Advanced Powder Technology, 2019, 30(11): 2659-2665. 20. Xuesong Yang, Shuai Wang*, Siyu Liu, Yurong He, CFD analysis on sorption-enhanced glycerol reforming in a membrane-assisted fluidized bed reactor, International Journal of Hydrogen Energy, 2019, 44(39): 21424-21433. 21. Shuai Wang*, Bowen Li, Yuxiang Tang, Yurong He, Thermodynamic assessment of membrane-assisted chemical looping reforming of glycerol, Chemical Engineering and Processing-Process Intensification, 2019, 142: 107564. 22. Xuesong Yang, Shuai Wang*, Bang Hu, Kai Zhang, Yurong He, Estimation of concentration polarization in a fluidized bed reactor with Pd-based membranes via CFD approach, Journal of Membrane Science, 2019, 581: 262-269. 23. Meijie Chen, Qin Ye, Changmin Shi, Qian Cheng, Boyu Qie, Xiangbiao Liao, Haowei Zhai, Yurong He, Yuan Yang*, New Insights into Nail Penetration of Li‐Ion Batteries: Effects of Heterogeneous Contact Resistance, Batteries & Supercaps, 2019, 2: 874-881.24. Meijie Chen, Jyotirmoy Mandal, Qin Ye, Aijun Li, Qian Cheng, Tianyao Gong, Tianwei Jin, Yurong He, Nanfang Yu, Yuan Yang*, A Scalable Dealloying Technique to Create Thermally Stable Plasmonic Nickel Selective Solar Absorbers. ACS Applied Energy Materials, 2019, 2(9), 6551-6557.- 2018年 1. Jian Huang, Yurong He*, Yanwei Hu, Xinzhi Wang, Steam generation enabled by a high efficiency solar absorber with thermal concentration, Energy, 2018, Part B, 165: 1282-1291. 2. Meijie Chen, Yurong He*, Comparing the Enhancement of the Near Field, Plasmonic nanostructures for broadband solar absorption based on the intrinsic absorption of metals, Solar Energy Material & Solar Cells, 2018, 188: 156-163.3. Lei Shi, Yurong He*, Yanwei Hu, Xinzhi Wang, Thermo-physical properties of Fe3O4@CNT nanofluids and controllable heat transfer performance under magnetic field in a rectangular enclosure, Energy Conversion and Management, 2018, 177: 249-257. 4. Xinzhi Wang, Yurong He*, Xing Liu, Synchronous steam generation and photodegradation for clean water generation based on localized solar energy harvesting, Energy Conversion and Management, 2018, 173: 158-166. 5. Yurong He*, Meijie Chen, Xinzhi Wang, Yanwei Hu, Plasmonic multi-thorny Gold nanostructures for enhanced solar thermal conversion, Solar Energy, 171: 73-82.6. Xinzhi Wang, Yurong He*, Yanwei Hu, Guangri Jin, Baocheng Jiang, Yimin Huang, Photothermal-conversion-enhanced photocatalytic activity of flower-like CuS superparticles under solar light irradiation, Solar Energy, 2018, 170: 586-593. 7. Lei Shi, Yurong He*, Xinzhi Wang, Yanwei Hu, Solar-assisted purification and evaporation systems via recyclable Fe3O4@TiO2 nanoparticles, Energy Conversion and Management, 2018, 171: 272-278. 8. Xing Liu, Xinzhi Wang, Jian Huang, Gong Cheng, Yurong He*, Volumetric solar steam generation enhanced by reduced graphene oxide nanofluid, Applied Energy, 2018, 220: 302-312.9. Xinzhi Wang, Yurong He*, Meijie Chen, Yanwei Hu, ZnO-Au composite hierarchical particles dispersed oil-based nanofluids for direct absorption solar collectors, Solar Energy Material & Solar Cells, 2018, 179: 185-193.10. Haoran Li, Yurong He*, Yanwei Hu, Xinzhi Wang, Commercially available activated carbon fiber felt enables efficient solar steam generation, ACS Applied Materials & Interfaces, 2018, 2(10): 9362-9368.11. Yurong He, Zhiwei Hua, Meijie Chen, Tianqi Tang, Jiecai Han*, Numerical Simulation on Sapphire Growth Process with Self-regulating Thermal Boundary Condition Method, Applied Thermal Engineering, 2018, 132: 87-94. 12. Yanwei Hu, Ziyu Liu, Yurong He*, Pool boiling heat transfer characteristics of SiO2-H2O nanofluid in a cylindrical vessel, Powder Technology, 2018, 327: 79-88. 13. Meijie Chen, Yurong He*, Xinzhi Wang, Yanwei Hu, Numerically investigating the optical properties of plasmonic metallic nanoparticles for effective solar absorption and heating, Solar Energy, 2018, 161: 17-24. 14. Meijie Chen, Yurong He*, Xinzhi Wang, Yanwei Hu, Complementary enhanced solar thermal conversion performance of core-shell nanoparticles, Applied Energy, 2018, 211: 735-742.15. 陈梅洁,唐天琪,刘子玉,何玉荣*,等离激元Ag纳米流体光热转换特性,中国科学院大学学报,2018,35(02):222-226.- 2017年 1. Xinzhi Wang, Yurong He*, Xing Liu, Jiaqi Zhu, Enhanced solar steam generation enabled by bio-inspired heat localization of floating paper-based CNT film, Powder Technology, 2017, 321: 276-285.2. Xinzhi Wang, Yurong He*, Xing Liu, Lei Shi, Jiaqi Zhu, Investigation of photothermal heating enabled by plasmonic nanofluids for direct solar steam generation, Solar Energy, 2017, 157: 35-46. 3. Haoran Li, Yurong He*, Ziyu Liu, Yimin Huang, A flexible thin-film membrane with broadband Ag@TiO2 nanoparticle for high-efficiency solar evaporation enhancement, Energy, 2017, 139: 210-219. 4. Jian Huang, Yurong He*, Meijie Chen, Baocheng Jiang, Yimin Huang, Solar evaporation enhancement by a compound film based on Au@TiO2 core-shell nanoparticles, Solar Energy, 2017, 155: 1225-1232. 5. Lei Shi, Yurong He*, Yimin Huang, Baocheng Jiang, Recyclable Fe3O4@CNT nanoparticles for high-efficiency solar vapor generation, Energy Conversion and Management, 2017, 149: 401-408. 6. Yanwei Hu, Yurong He*, Zhenduo Zhang, Baocheng Jiang, Yimin Huang, Numerical simulation of natural convection heat transfer for eutectic binary nitrate salt based Al2O3 nanocomposites in solar power thermal energy storage systems, Renewable Energy, 2017, 114, Part B: 686-696. 7. Meijie Chen, Yurong He*, Jiaqi Zhu, Preparation of Au–Ag Bimetallic Nanoparticles for Enhanced Solar Photothermal Conversion, International Journal of Heat and Mass Transfer, 2017, 114: 1098-1104. 8. Xinzhi Wang, Yurong He*, Xing Liu, Jiaqi Zhu, Synthesis of hierarchical flower-like particles and its application as super-hydrophobic coating, Powder Technology, 2017, 319: 408-414. 9. Tianqi Tang, Yurong He*, Tong Tai, Dongsheng Wen, DEM numerical investigation of wet particle flow behaviors in multiple-spout fluidized beds, Chemical Engineering Science, 2017, 172: 79-99. 10. Haoran Li, Yurong He*, Ziyu Liu, Yimin Huang, Baocheng Jiang, Synchronous steam generation and heat collection in a broadband Ag@TiO2 core–shell nanoparticle–based receiver, Applied Thermal Engineering, 2017, 121: 617-627. 11. Yanwei Hu, Yurong He*, Zhenduo Zhang, Dongsheng Wen, Effect of Al2O3 nanoparticle dispersion on thermal properties of a binary nitrate salt eutectic for solar power applications, Energy Conversion and Management, 2017, 142: 366-373. 12. Xinzhi Wang, Yurong He*, Xing Liu, Gong Cheng, Jiaqi Zhu, Solar steam generation enhancement through bio-inspired interface heating of broadband absorbing plasmonic membranes, Applied Energy, 2017, 195: 414-425. 13. Xinzhi Wang, Yanwei Hu, Tianyu Li, Yurong He*, Experimental Investigation of Graphene Nanofluid and Numerical Simulation of Its Natural Convection in a Square Enclosure, Nanoscience and Nanotechnology Letters, 2017, 9: 640-649. 14. Haoran Li, Yurong He*, Ziyu Liu, Baocheng Jiang, Yimin Huang, Rapid synthesis of broadband Ag@TiO2 core-shell nanoparticles for solar energy conversion, Solar Energy Materials & Solar Cells, 2017, 017: 52-60. 15. Meijie Chen, Yurong He*, Xing Liu, Jiaqi Zhu, Rui Liu, Synthesis and optical properties of gold nanoparticles with size control, Powder Technology, 2017, 311: 25-33. 16. Meijie Chen, Yurong He*, Jian Huang, Jiaqi Zhu, Investigation into Au nanofluids for solar photothermal conversion, International Journal of Heat and Mass Transfer, 2017, 108, Part B, 1894-1900. 17. Yanwei Hu, Haoran Li, Yurong He*, Ziyu Liu, Yunhua Zhao, Effect of nanoparticles size and concentration on boiling performance of SiO2 nanofluid, International Journal of Heat and Mass Transfer, 2017, 107: 820-828. 18. Jian Huang, Yurong He*, Li Wang, Yimin Huang, Baocheng Jiang, Bifunctional Au@TiO2 core–shell nanoparticle films for clean water generation by photocatalysis and solar evaporation, Energy Conversion and Management, 2017, 132: 452-459. -2016年 1. Xinzhi Wang, Yurong He*, Gong Cheng, Lei Shi, Xing Liu, Direct vapor generation through localized solar heating via carbon-nanotube nanofluid, Energy Conversion and Management, 2016, 130:176-183. 2. Meijie Chen, Yurong He*, Jian Huang, Jiaqi Zhu, Synthesis and Solar Photo-Thermal Conversion of Au, Ag and Au/Ag Blended Plasmonic Nanoparticles, 2016, Energy Conversion and Management, 2016, 127: 293-300. 3. Tianqi Tang, Yurong He*, Anxing Ren, Yunhua Zhao, Investigation on Wet Particle Flow Behavior in a Riser Using LES-DEM Coupling Approach, Powder Technology, 2016, 304: 164-176. 4. Meijie Chen, Yurong He*, Jiaqi Zhu, Dongsheng Wen, Investigating the collector efficiency of silver nanofluids based direct absorption solar collectors, Applied Energy, 2016, 181: 65-74. 5. Tianyu Wang, Yurong He*, Tianqi Tang, Yunhua Zhao, Numerical investigation on particle behavior in a bubbling fluidized bed with non-spherical particles using discrete hard sphere method, Powder Technology, 2016, 301: 927-939. 6. Liu Yuanchun, Hua Zhiwei, Yurong He*, Zhu Jiaqi, Han Jiecai. Investigation of thermal radiation effect on optical dome of sapphire coated yttrium oxide, Science Bulletin, 2016, 61(10): 801-810. 7. Yurong He*, Haoran Li, Yanwei Hu, Xinzhi Wang, Jiaqi Zhu, Boiling heat transfer characteristics of ethylene glycol and water mixture based ZnO nanofluids in a cylindrical vessel, International Journal of Heat and Mass Transfer, 2016, 98: 611-615. 8. Yanwei Hu, Haoran Li, Yurong He*, Lidong Wang, Role of nanoparticles on boiling heat transfer performance of ethylene glycol aqueous solution based graphene nanosheets nanofluid, International Journal of Heat and Mass Transfer, 2016, 96: 565-572. 9. Tianyu Wang, Yurong He*, Tianqi Tang, Wengen Peng, Experimental and numerical study on a bubbling fluidized bed with wet particles, AIChE Journal, 2016, 62(6): 1970-1985. 10. Meijie Chen, Yurong He*, Jiaqi Zhu, Dong Rip Kim, Enhancement of photo-thermal conversion using gold nanofluids with different particle sizes, Energy Conversion and Management, 2016, 112: 21-30. 11. Yurong He*, Peng Wengen, Tang Tianqi, Yan Shengnan, Zhao Yunhua, DEM Numerical Simulation of Wet Cohesive Particles in a Spout Fluid Bed, Advanced Powder Technology, 2016, 27(1): 93-104. 12. Yurong He*, Shengnan Yan, Tianyu Wang, Baocheng Jiang, Yimin Huang, Hydrodynamic characteristics of gas-irregular particle two-phase flow in a bubbling fluidized bed: an experimental and numerical study, Powder Technology, 2016, 287: 264-276. 13. Wang Tianyu, Tang Tianqi, Yurong He*, Yi Hongliang*, Analysis of particle behaviors using a region-dependent method in a jetting fluidized bed, Chemical Engineering Journal, 2016, 283: 127-140. 14. 胡彦伟,程珙,李浩然,何玉荣*,化学沉淀法制备纳米SiO2颗粒,化工学报,2016,67(S1):379-383。 -2015年 1. Wanlong Han, Peigang Yan*, Wanjin Han, Yurong He, Design of wind turbines with shroud and lobed ejectors for efficient utilization of low-grade wind energy, Energy, 2015, 89: 687-701. 2. Tianyu Wang, Yurong He*, Shengnan Yan, Tianqi Tang, H. Inaki Schlaberg, Cluster granular temperature and rotational characteristic analysis of a binary mixture of particles in a gas-solid riser by mutative Smagorinsky constant SGS model, Powder Technology, 2015, 286: 73-83. 3. Haoran Li, Yurong He*, Yanwei Hu, Baocheng Jiang, Yimin Huang, Thermophysical and natural convection characteristics of ethylene glycol and water mixture based ZnO nanofluids, International Journal of Heat and Mass Transfer, 2015, 91: 385-389. 4. Haoran Li, Li Wang, Yurong He*, Yanwei Hu, Jiaqi Zhu, Baocheng Jiang, Experimental investigation of thermal conductivity and viscosity of ethylene glycol based ZnO nanofluids, Applied Thermal Engineering, 2015, 88(5): 363-368. 5. He Yurong, Liu Yuanchun, Liu Xing, Zhu Jiaqi*, Han Jiecai*. Experimental and numerical study on structural and thermal radiation properties of yttrium oxide sputtered on sapphire. Journal of Alloys and Compounds, 2015, 627: 438-445. 6. Meijie Chen, Yurong He*, Jiaqi Zhu, Yong Shuai, Baocheng Jiang, Yimin Huang, An experimental investigation on sunlight absorption characteristics of silver nanofluids, Solar Energy, 2015, 115: 85-94. 7. Xinzhi Wang, Meijie Chen, Yurong He*, Shape-controlled Preparation of Cu2O Crystals and their Growth Mechanism, Journal of Alloys and Compounds, 2015, 628:50-56. 8. Tianyu Wang, Yurong He*, Dong Rip Kim*, Granular temperature and rotational characteristic analysis of a gas-solid bubbling fluidized bed under different gravities using discrete hard sphere model. Powder Technology, 2015, 271: 35-48. 9. Wang Tianyu, He Yurong*, Yan Shengnan, Dong Rip Kim, Rotation characteristic and granular temperature analysis in a bubbling fluidized bed of binary particles, Particuology, 2015, 18: 76-88. 10. 刘元春,袁子规,何玉荣*,朱嘉琦,二维光学头罩热辐射干扰饱和数值模拟,哈尔滨工程大学学报,2015,36(10):1-5。 11. 陈梅洁,程珙,田枫林,何玉荣*,高超声速飞行器流-热-固耦合数值模拟,化工学报,2015,66(SI):89-94。 -2014年 1. Yunhua Zhao*, Yingjie Zhong, Yurong He, H. Inaki Schlaberg, Boundary conditions for collisional granular flows of frictional and rotational particles at flat walls, AIChE Journal, 2014, 60(12): 4065-4075. 2. Huai-Zhi Han, Bing-Xi Li, Feng-Chen Li*, Yu-Rong He, RST model for turbulent flow and heat transfer mechanism in an outward convex corrugated tube, Computers& Fluids, 2014, 91: 107-129. 3. Yanwei Hu, Yurong He*, Cong Qi, Baocheng Jiang, H. Inaki Schlaberg, Experimental and numerical study of natural convection in a square enclosure filled with nanofluid, International Journal of Heat and Mass Transfer, 2014, 76: 380-392. 4. Yurong He*, Wengen Peng, Tianyu Wang and Shengnan Yan, DEM Study of Wet Cohesive Particles in the Presence of Liquid Bridges in a Gas Fluidized Bed, Mathematical Problems in Engineering, 2014, 2014(1):1-14. 5. Yuanchun Liu, Yurong He*, Jiaqi Zhu, Jiecai Han, Dongliang Quan, Numerical simulation of aerodynamic heating and stresses of chemical vapor deposition ZnS for hypersonic vehicles, Journal of Zhejiang University-SCIENCE A,2014, 15(3): 185-196. 6. Wengen Peng, Yurong He*, Tianyu Wang, Granular temperature with discrete element method simulation in a bubbling fluidized bed, Advanced Powder Technology, 2014, 25: 896-903. 7. Yuanchun Liu, Yurong He, Zigui Yuan, Jiaqi Zhu*, Jiecai Han*, Numerical and experimental study on thermal shock damage of CVD ZnS infrared window material, Journal of Alloys and Compounds, 2014, 589: 101-108. 8. LIU Yuanchun, HE Yurong*, TIAN Fenglin, ZHU Jiaqi, Thermal shock damage behavior of CVD ZnS by oxygen propane flame: a numerical and experimental study, Chinese Journal of Aeronautics, 2014, 27(2): 266-271. 9. Yanwei Hu, Yurong He*, Shufu Wang, Qizhi Wang, H. Inaki Schelaberg, Experimental and numerical investigation on natural convection heat transfer of TiO2-water nanofluids in a square enclosure, Journal of Heat Transfer-Transactions of the ASME, 2014, 136, 022502. 10. 齐聪,何玉荣*,闫盛楠,田枫林,矩形腔内纳米流体自然对流的两相格子Boltzmann模拟,工程热物理学报,2014,35(2):282-286。 11. 刘元春,袁子规,李天宇,何玉荣*,朱嘉琦,平面窗口气动热辐射效应数值模拟,化工学报,2014,65(S1): 188-193。 -2013年 1. Wengen Peng, Yanwei Hu, Yuanchun Liu, Guangri Jin, Yurong He*, Analytical Modeling on the Strength of the Tubesheet for a Steam Surface Condenser, Journal of Pressure Vessel Technology-Transactions of the ASME, 2013, 135(5): 051206. 2. Cong Qi, Yurong He*, Shengnan Yan, FenglinTian, Yanwei Hu, Numerical simulation of natural convection in a square enclosure filled with nanofluid using the two-phase Lattice Boltzmann method, Nanoscale Research Letters, 2013, 8(1): 56. 3. Cong Qi, Yurong He*, Yanwei Hu, Baocheng Jiang, Tianzhu Luan*, Yulong Ding, Experimental study on boiling heat transfer of α-Al2O3-water nanofluid, Nanoscience and Nanotechnology Letters, 2013, 5(8): 895-901. 4. Juan-Cheng Yang, Feng-Chen Li*, Yu-Rong He, Yi-Min Huang, Bao-Cheng Jiang, Experimental study on the characteristics of heat transfer and flow resistance in turbulent pipe flows of viscoelastic-fluid-based Cu nanofluid, International Journal of Heat and Mass Transfer, 2013, 62: 303-313. 5. Feng-Chen Li*, Juan-Cheng Yang, Wen-Wu Zhou, Yu-Rong He, Yi-Min Huang, Bao-Cheng Jiang, Experimental study on the characteristics of thermal conductivity and shear viscosity of viscoelastic-fluid-based nanofluids containing multiwalled carbon nanotubes, Thermochimica Acta, 2013, 556: 47-53. -2012年 1. He Yurong, Wang Tianyu, Deen Niels, Annaland, Martin van Sint, Kuipers, Hans, Wen Dongsheng*, Discrete particle modeling of granular temperature distribution in a bubbling fluidized bed, Particuology, 2012, 10(4): 428-437. 2. Huai-Zhi Han, Bing-Xi Li*, Bi-Yong Yu, Yu-Rong He, Feng-Chen Li, Numerical study of flow and heat transfer characteristics in outward convex corrugated tubes, International Journal of Heat and Mass Transfer, 2012, 55(25-26): 7782-7802. -2011年 1. Yurong He*, Shufu Wang, Junjun Ma, Fenglin Tian, Yatao Ren, Experimental study on the light-heat conversion characteristics of nanofluids, Nanoscience and Nanotechnology Letters, 2011, 3(4):494-496. 2. Wang Shuai, Liu Guodong, Lu Huilin*, Chen Juhui, He Yurong, Wang Jiaxing, Fluid dynamic simulation in a chemical looping combustion with two interconnected fluidized beds, Fuel Processing Technology, 2011, 92(3): 385-393. 3. 刘元春,何玉荣*,彭稳根,朱嘉琦,韩杰才,窗口材料热力耦合模拟研究,化工学报,2011,62(S1):123-129. 4. 王书福,马军军,王天宇,何玉荣*,进口边界条件对边壁进风鼓泡床流动的影响研究,动力工程学报,2011,31(11):855-860+868。 -2010年 1. Hao Zhenhua, Li Xiang, Lu Huilin*, Liu Guodong, He Yurong, Wang Shuai, Xu Pengfei, Numerical simulation of particle motion in a gradient magnetically assisted fluidized bed, Powder Technology, 2010, 203(3): 555-564. 2. Hao Zhenhua, Wang Shuai, Lu Huilin*, Liu Guodong, He Yurong, Xu Pengfei, Wang Jiaxing, Numerical Simulation of Fluid Dynamics of a Riser: Influence of Particle Rotation, Industrial & Engineering Chemistry Research, 2010, 49(8): 3585-3596. 3. Yin Lijie, Wang Shuyan, Lu Huilin*, Wang Shuai, Xu Pengfei, Wei Lixing, He Yurong, Flow of gas and particles in a bubbling fluidized bed with a filtered two-fluid model, Chemical Engineering Science, 2010, 65(9): 2664-2679. 4. He Yurong*, Men Yubin, Liu Yuanchun, Liu Wentie, Ding Yulong, Investigation of solids segregation of binary mixtures in a rotating drum at Various Froude numbers, Journal of Harbin Institute of Technology (New Series), 2010, 17(5): 701-705。 5. 刘石,何玉荣*,赵云华,李志宏,离散单元法模拟颗粒流在斜板上运动及分离过程,哈尔滨工业大学学报,2010,42(9):1491-1494。 -2009年 1. Y. He, N.G. Deen*, M. van Sint Annaland, and J.A.M. Kuipers, Gas-solid turbulent flow in a circulating fluidized bed riser: numerical study of binary particle systems, Industrial& Engineering Chemistry Research, 2009, 48: 8098-8108. 2. Y. He, N.G. Deen*, M. van Sint Annaland, and J.A.M. Kuipers, Gas-solid turbulent flow in a circulating fluidized bed riser: experimental and numerical study of monodisperse particle systems, Industrial & Engineering Chemistry Research, 2009, 48: 8091-8097. 3. Yurong He*, Wenbo Zhan, Yunhua Zhao, Huilin Lu, Inaki Schlaberg, Prediction on immersed tubes erosion using two-fluid model in a bubbling fluidized bed, Chemical Engineering Science, 2009, 64(13):3072-3082. 4. Yurong He*, Yubin Men, Yunhua Zhao, Huilin Lu, Yulong Ding, Numerical investigation into the convective heat transfer of TiO2 nanofluids flowing through a straight tube under the laminar flow conditions, Applied Thermal Engineering, 2009, 29(10): 1965-1972. 5. Yurong He*, Yubin Men, Xing Liu, Huilin Lu, Haisheng Chen, Yulong Ding, Study on Forced Convective Heat Transfer of Non-Newtonian Nanofluids, Journal of Thermal Science, 2009, 18 (1): 20-26. 6. Dongsheng Wen*, Li Zhang, Yurong He, Flow and migration of nanoparticle in a single channel, Heat and Mass Transfer, 2009, 45 (8): 1061-1067. 7. Wang Shuyan, Li Xiang, Lu Huilin*, Yu Long, Sun Dan, He Yurong, Ding Yonglong, Numerical simulations of flow behavior of gas and particles in spouted beds using frictional-kinetic stresses model, Powder Technology, 2009, 196: 184-193. 8. 何玉荣*,詹文博,门玉宾,刘文铁,陆慧林,速度进口边界条件对鼓泡床流动影响研究,工程热物理学报,2009,5:789-792。 -2008年 1. Yulong Ding*, Yurong He, Ngoc Thang Cong, Wei Yang, Haisheng Chen, Hydrodynamics and heat transfer of gas–solid two-phase mixtures flowing through packed beds – a review, Progress in Natural Science, 2008, 18(10): 1185-1196. 2. Shuyan Wang, Yurong He, Huilin Lu*, Jianmin Ding, Lijie Yin, Wentie Liu, Simulation of performance of cracking reactions of particle clusters in FCC risers, Industrial & Engineering Chemistry Research, 2008, 47, 4632-4640. 3. Haisheng Chen, Yurong He, Jianwei Zhu, Hajar Alias, Yulong Ding*, Paul Nancarrow, Christopher Hardacre, David Rooney* and Chunqing Tan, Rheological and heat transfer behaviour of the ionic liquid, [C4mim][NTf2], International Journal of Heat and Fluid Flow, 2008, 29(1): 149-155. 4. Huilin Lu*, Shuyan Wang, Yurong He, Jianmin Ding, Guodong Liu and Zhenhua Hao, Numerical simulation of flow behavior of particles and clusters in riser using two granular temperatures, Powder Technology, 2008, 182(2): 282-293. 5. Haisheng Chen*, Wei Yang, Yurong He, Yulong Ding, Lingling Zhang, Chunqing Tan, Alexei A. Lapkin and Dmitry V. Bavykin, Heat transfer and flow behaviour of aqueous suspensions of titanate nanotubes (nanofluids), 2008, Powder Technology, 183(1): 63-72. 6. Wang Shuyan, Yin Lijie, Lu Huilin*, He Yurong, Jianmian Ding, Liu Guodong and Li Xiang, Simulation of effect of catalytic particle clustering on methane steam reforming in a circulating fluidized bed reformer, Chemical Engineering Journal, 2008, 139(1): 136-146.-2007年 1. Yurong He, Haisheng Chen, Yulong Ding*, Bob Lickiss, Solids Motion and Segregation of Binary Mixtures in a Rotating Drum Mixer, Chemical Engineering Research & Design, 2007, 85(7): 963-973. 2. Yurong He, Yi Jin, Haisheng Chen, Yulong Ding*, Daqiang Cang and Hulin Lu, Heat transfer and flow behaviour of aqueous suspensions of TiO2 nanoparticles (nanofluids) flowing upward through a vertical pipe, International Journal of Heat and Mass Transfer, 2007, 50: 2272-2281. 3. Thang Ngoc Cong, Yurong He, Haisheng Chen and Yulong Ding*, Heat transfer of gas-solid two-phase mixtures flowing through a packed bed under constant wall heat flux conditions, Chemical Engineering Journal, 2007, 130(1): 1-10. 4. Yulong Ding*, Haisheng Chen, Yurong He, Lapkin, Alexei, Yeganeh, Mahboubeh, Siller, Lidija, Butenko, Yuriy V., Forced convective heat transfer of nanofluids, Advanced Powder Technology, 2007, 18 (6): 813-824. 5. Haisheng Chen*, Yulong Ding, Yurong He and Chunqing Tan, Rheological behaviour of ethylene glycol based titania nanofluids, Chemical Physics Letters, 2007, 444(4-6): 333-337. 6. Dongsheng Wen, Thang Ngoc Cong, Yurong He, Haisheng Chen and Yulong Ding*, Heat transfer of gas-solid two-phase mixtures flowing through a packed bed, Chemical Engineering Science, 2007, 62(16): 4241-4249. 7. Yulong Ding*, Haisheng Chen, Liang Wang, Chane-Yuan Yang, Yurong He, Wei Yang, Wai Peng Lee, Lingling Zhang and Ran Huo, Heat Transfer Intensification Using Nanofluids, KONA- Powder and Particle, 2007, 25: 23. -2006年 1. Yurong He, Thang Ngoc Cong and Yulong Ding*, Gas-solid two-phase mixtures flowing upward through a confined packed bed, Particle & Particle Systems Characterization, 2006, 23: 279-288. 2. Zhao Yunhua, Lu Huilin*, He Yurong, Jianmin Ding and Yin Lijie, Numerical prediction of combustion of carbon particle clusters in a circulating fluidized bed riser, Chemical Engineering Journal, 2006, 118: 1-10 3. Shuiqing Li, Yulong Ding*, Dongsheng wen and Yurong He, Modelling of the behaviour of gas-solid two-phase mixtures flowing through packed beds, Chemical Engineering Science, 2006, 61(6): 1922-1931. -2005年 1. Yurong He*, Huilin Lu, Dongsheng Wen, Yulong Ding, A numerical study on the gas fluidisation of secondary agglomerates of nanoparticles, Progress in Natural Science, 2005, SI, 15: 111-116. 2. Lu Huilin*, Sun Qiaoqun, He Yurong, Sun Yongli, Jianmin Ding and Li Xiang, Numerical study of particle cluster flow in risers with cluster-based approach, Chemical Engineering Science, 2005, 60(23): 6757-6767. 3. Zheng Jianxiang, Lu Huilin*, Sun Xiaoquan, He Yurong, Ding Jianmin, Wang Shuyan, Hydrodynamic modeling of gas-particle flows in D-D calciners, Industrial & Engineering Chemistry Research, 2005, 44: 3033-3041. 4. Sun Qiaoqun, Lu Huilin*, Liu Wentie, He Yurong, Yang Lidan and Dimitri Gidaspow, Simulation and experiment of segregating/mixing of rice husk–sand mixture in a bubbling fluidized bed, Fuel, 2005, 84(14-15): 1739-1748. -2004年 1. He Yurong, Lu Huilin*, Sun Qiaoqun, Yang Lidan, Zhao Yunhua, Dimitri Gidaspow, Jacques Bouillard, Hydrodynamics of gas-solid flow around immersed tubes in bubbling fluidized beds, Powder Technology, 2004, 145: 88-105. 2. He Yurong, Zhao Guangbo, Jacques Bouillard*, Lu Huilin, Numerical simulations of the effect of conical dimension on the hydrodynamic behaviour in spouted beds. Canadian Journal of Chemical Engineering, 2004, 82(1): 20-29. 3. Lu Huilin*, He Yurong, Liu Wentie, Jianmin Ding, Dimitri Gidaspow*, Jacques Bouillard, Computer simulations of gas-solid flow in spouted beds using kinetic-frictional stress model of granular flow, Chemical Engineering Science, 2004, 59: 856-878. -2003年 1. Lu Huilin*, He Yurong, Dimitri Gidaspow, Hydrodynamic modeling of binary mixture in a gas bubbling fluidized bed using the kinetic theory of granular flow, Chemical Engineering Science, 2003, 58: 1197-1205. 2. Lu Huilin*, He Yurong, Dimitri Gidaspow, Yang Lidan, Size segregation of binary mixture of solids in bubbling fluidized beds, Powder Technology, 2003, 134: 86-97.能源动力类专业教学指导委员会委员(2018-2022)黑龙江省重点实验室主任中国工程热物理学会多相流分会副主任委员(2020-)中国颗粒学会会员中国化工学会会员Powder Technology, Chemical Engineering Journal等国际和国内期刊审稿人 相关热点