苑春苗 照片

苑春苗

教授 博导

所属大学: 东北大学

所属学院: 资源与土木工程学院

邮箱:
yuanchunmiao@mail.neu.edu.cn

个人主页:
http://www.zitu.neu.edu.cn/2019/0910/c1090a141971/page.htm

个人简介

教育经历 2004-9至2009-7, 东北大学, 安全技术及工程, 博士 2000-9至2003-3, 东北大学, 安全技术及工程, 硕士 1996-8至2000-7, 东北大学, 安全工程, 学士 科研与学术工作经历 2019-1至今东北大学, 资源与土木工程学院安全工程研究所, 教授/系主任 2013-1至2018-12, 东北大学, 资源与土木工程学院安全工程研究所, 长聘副教授/教授 2012-12至2013-12, 加拿大Dalhousie大学, 化工学院, 访问学者 2008-1至2012-12, 东北大学, 资源与土木工程学院安全工程研究所, 讲师 2003-4至2007-12, 东北大学, 资源与土木工程学院安全工程研究所, 助教

研究领域

主要从事粉尘爆炸防护理论与技术方面的研究工作

近期论文

[1] Li C, Yuan Y, Amyotee P, Xiao M, Zheng W, Bu Y, Yuan C* , Li G. Friction spark generation and incendivity of several metal alloys. J Loss Prev Process Ind., 70: 104406, 2021.(SCI-2区,IF:2.795) [2] Bu Y, Amyotee P, Li C, Yuan W, Yuan W, Yuan C*, Li G. Effects of dust dispersibility on the suppressant enhanced explosion parameter (SEEP) in flame propagation of Al dust clouds. J. Hazard. Mater., 404: 124119, 2021.(SCI-1区,IF:9.038) [3] Bu Y, Yuan Yi, Xue S, Amyotee P, Li G, Yuan W, Ma Z, Yuan C*, Li G. Effect of admixed silica on dispersibility of combustible dust clouds in a Godbert-Greenwald furnace. Powder Technol., 2020, 374: 496-506.(SCI-1区,IF:4.142) [4]Meng F, Xue S, Amyotee P, Li C, Yuan Y, Wang Q, Pang L, Li G, Yuan C*. Characterization of Ti powders mixed with TiO2 powders: Thermal and kinetic studies. J Loss Prev Process Ind., 66: 104184, 2020(SCI-2区,IF:2.795) [5]Bu Y, Ma Z, Li C, Amyotee P, Yuan W, Yuan C*, Li G. Effect of admixed solid inertants on dispersibility of combustible dust clouds in a modified hartmann tube. Process Saf Environ., 2020, 135:1-11.(SCI-1区,IF:4.966) [6] 蔡景治, 苑春苗*, 孟凡一, 李畅. 微纳米钛金属粉尘层着火蔓延特性研究[J]. 东北大学学报(自然科学版), 2020, 41: 137-142. (EI) [7] Bu Y, Li C, Amyotee P, Yuan W, Yuan C*, Li G. Moderation of Al dust explosion by micro-and nano-sized Al2O3 powder. J. Hazard. Mater., 381: 120968, 2020.(SCI-1区,IF:9.038) [8] 王富强, 苑春苗*, 查伟, 李畅, 孟凡一, 李刚. 高温钢球嵌入作用下木粉的阴燃着火特性[J]. 工程热物理学报,2019, 40: 235-239.(EI) [9] Cai J, Li C, Amyotee P, Yuan W, Yuan C*, Li G. Effect of solid inertants and sample inclination angle on fire hazard of metallic powder layers. Process Saf Environ., 129: 321-325, 2019. (SCI-1区,IF:4.384) [10] Bu Y, Yuan C*, Amyotee P, Li C, Cai J, Li G. Ignition hazard of titanium powder clouds exposed to hotspots. J. Loss Prev. Process Ind., 60: 106-115, 2019.(SCI-2区,IF:2.795) [11] Bu Y, Yuan C*, Amyotee P, Li C, Cai J, Li G. Ignition hazard of non-metallic dust clouds exposed to hotspots versus electrical sparks. J. Hazard. Mater., 365: 895-904, 2019.(SCI-1区,IF:9.038) [12] Cai J, Yuan C*, Li C, Amyotee P, Bu Y, Li G. Effect of admixture of solid inertant on fire hazard of dust layers oriented at varying degrees of inclination. J. Loss Prev. Process Ind., 57: 41-46, 2019.(SCI-2区,IF: 2.795) [13] 卜亚杰, 苑春苗*, 郝剑涛, 李畅. 电火花作用下粉尘云着火的延迟时间[J]. 东北大学学报(自然科学版), 2018, 39: 1658-1672. [14]Yuan C*, Cai J, Amyotee P, Li C, Bu Y, Liu K, Li G. Fire hazard of titanium powder layers mixed with inert nano TiO2 powder. J. Hazard. Mater., 346: 19-26, 2018.(SCI-1区,IF:7.65) [15]Yuan C*, Cai J, Amyotee P, Li C. Effect of sample orientation on fire hazard of non-metallic dust layers exposed to electric sparks. J. Loss Prev. Process Ind., 54: 229-237, 2018.(SCI-2区,IF: 2.069) [16] Yuan C*, Liu K, Amyotee P, Li C, Cai J, Wang F, Li G. Electric spark ignition sensitivity of nano and micro Ti powder layers in the presence of inert nano TiO2 powder. J. Loss Prev. Process Ind., 46: 84-93, 2017.(SCI-2区,IF: 1.982) [17] Yuan C*, Amyotee P, Hossain M, Li C. Minimum ignition energy of nano and micro Ti powder in the presence of inert nano TiO2 powder. J. Hazard. Mater., 274: 322-330, 2014.(SCI-1区,IF:4.529) [18]Yuan C*, Amyotee P, Hossain M, Li C. Minimum ignition temperature of nano and micro Ti powder clouds in the presence of inert nano TiO2 powder. J. Hazard. Mater., 275: 1-9, 2014.(SCI-1区,IF:4.529) [19]Yuan C*, Huang D, Li C, Li G. Ignition behavior of magnesium powder layers on a plate heated at constant temperature. J. Hazard. Mater., 246-247: 283-290, 2013.(SCI-1区,IF:4.332) [20] Yuan C*, Yu L, Li C, Li G, Zhong S. Thermal analysis of magnesium reactions with nitrogen/oxygen gas mixtures. J. Hazard. Mater., 260: 707-714, 2013.(SCI-1区,IF:4.332) [21] 苑春苗*, 李畅, 李刚. 恒温热板加热条件下镁粉尘层的着火规律[J]. 东北大学学报, 2012, 32: 1503-1506.(EI) [22] 苑春苗*, 李畅, 李刚, 张培红. 氮气气氛下玉米淀粉热分解动力学参数[J]. 东北大学学报(自然科学版), 2012, 33: 584-587.(EI) [23] Yuan C*, Li C, Li G, Zhang P. Ignition temperature of magnesium powder clouds: A theoretical model. J. Hazard. Mater., 239-240: 294-301, 2012.(SCI-1区,IF:3.925) [24] Yuan C*, Li C, Li G, Zhang P. Modeling of magnesium powders explosion in a 20L sphere, in: 9th International Conference on Measurement and Control of Granular Materials, MCGM 2011 -Global High Level Academic Seminar, Trans Tech Publications, Shanghai, China, 2012, pp. 118-121.(EI) [25] Yuan C*, Li C, Li G. Coal dust explosion prevention and protection based on inherent safety, Engineering Procedia, 26: 1517-1525, 2011.(EI)