
姓名:陈磊
单位:新疆大学化工学院
电话:13639936339
邮箱:leichenxj@sina.com
教育经历:
2020年9月——2024年9月 大连理工大学 化工过程机械 博士
2014年9月——2017年6月 新疆大学 机械工程 硕士
2010年9月——2014年6月 东北大学 机械工程及自动化 本科
陈磊,男,汉族,中共党员,工学博士,新疆大学A类博士人才,硕士生导师,先后参与政府间国际合作项目、国家自然科学基金项目3项,主持自治区级项目5项、承担大连理工大学、中国石油、中国石化等企事业单位技术开发项目共计5项,发表学术论文40余篇,授权发明专利3项,以第一作者身份在Energy、GSE、PVP等Top期刊发表SCI/EI论文10篇,获科技成果评价“国际领先”1项,国家石油天然气管网集团有限公司项目评审专家,担任ENERGY、ENG FAIL ANAL、J ENVIRON MANAGE等SCI期刊审稿专家。
主持自治区级项目5项:
[1] 2024年自治区重点研发专项,天然气管道改输氢气关键技术研究与应用,2025-2027,21万,专题负责人.
[2] 2024年自治区重点研发任务专项项目(厅地联动),荒煤气绿色高效提氢安全评价方法与应用,2025-2027,45万,子课题负责人.
[3] 2024年自治区重大科技专项,棉籽深加工关键技术提升及高值化产品研发,2025-2027,10万,专题负责人.
[4] 新疆自然科学基金项目,2020D01C073,分布式脉动流诱导换热器弹性管束振动研究,2020.6-2023.6,7万,主持.
[5] 2018年新疆自治区高校本科教育教学改革研究项目,过程设备虚拟控制实验技术教学研究与探索,2018.12-2020.12,2万,主持.
主持企事业单位技术研发项目5项:
[1] 大连理工大学技术开发委托项目,CO2管道流动保障试验平台检测系统开发,2024-2026,40万,主持.
[2] 中油新疆石油工程有限公司技术开发委托项目,CCUS领域超临界二氧化碳埋地管道泄漏影响研究,2025-2027,23万,主持.
[3] 大连理工大学技术开发委托项目,多相态CO2输运管道断裂扩展过程信息采集系统开发,2025-2027,30万,主持.
[4] 自治区特种设备检验研究院,承压设备合于使用评价应用研究,2025-2026,13.5万,主持.
[5] 新疆绿能环境服务有限公司,多相态CO2提高农作物产值研究,2025-2030,10万元,主持.
代表性研究成果:
[1] Chen L., Hu Y. W., Yang K., et al. Experimental research on the fracture and arrest process of supercritical CO2 pipelines, International Journal of Pressure Vessels and Piping,2024, Volume 212, Part A:105314. (中科院2区Top,IF 3)
[2] Chen L., Hu Y. W., Yang K., et al. Experimental study of decompression wave characteristics and steel pipe applicability of supercritical CO2 pipeline[J]. Gas Science and Engineering, 2024, 121: 205203.(中科院2区Top,IF 5.5)
[3] Chen L., Hu Y. W., Yang K., et al. Fracture process characteristic study during fracture propagation of a CO2 transport network distribution pipeline[J]. Energy, 2023, 283: 129060.(中科院1区Top,IF 9)
[4] Chen L. Hu Y. W., Yang K., et al. Depressurization and heat transfer during leakage of supercritical CO2 from a pipeline[J]. Greenhouse Gases-Science and Technology, 2022, 12(5): 13. (中科院3区,IF 2.3)
[5] Chen L, Zhang H.X, Huang S, Li J.J. Numerical study on structure optimization and heat transfer characteristic of distributed pulsating flow heat exchanger[J], Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2022 ,44, 7080-7094. (JCR Q3, IF 3.3)
[6] Chen L, Zhang H.X, Huang S, Wang B. Numerical analysis of flow-induced vibration of heat exchanger tube bundles based on fluid-structure coupling dynamics, Modelling and Simulation in Engineering, 2022, 467019:1-14. (EI)
[7] 陈磊, 闫兴清, 胡延伟, 等. 二氧化碳管道意外泄漏减压过程的断裂控制研究进展[J]. 化工进展, 2022, 41: 1241-1255.(EI,卓越期刊)
[8] 陈磊, 胡延伟, 闫兴清, 等. CO2管道断裂扩展与管内减压耦合特性数值模拟[J]. 油气储运, 2024, 43: 537-544.(国内权威期刊)
[9] Yang K., Chen L., Hu Y., et al. Thermophysical evolution during different decompression of N2‐containing S‐CO2 pipelines[J]. Greenhouse Gases: Science and Technology, 2023, 14(1): 182-196. (JCR Q3, IF 4)
[10] Hu Y., Chen L., Cao Z., et al. Experimental study on supercritical CO2 jet characteristics and coal breakage utilization in carbon capture, utilization and storage (CCUS) process[J]. Process Safety and Environmental Protection, 2024, 184: 260-270. (中科院2区Top,IF 7)
[11] Ding J., Yan X., Chen L., et al. Effect of airflow velocity in vessel-pipelines on dust explosion during pneumatic conveying[J]. Powder Technology, 2024, 447. (中科院2区,IF 5)
[12] Ding J., Yan X., Chen L., et al. Experimental study on the impact of airflow velocity and pipeline diameter on dust explosions in vessel-pipeline pneumatic conveying[J]. Journal of Loss Prevention in the Process Industries, 2024, 92. (中科院2区Top,IF 4)
[13] Cao Z., Hu Y., Chen L., et al. Experimental study of leakage characteristics and risk prediction of N2-containing dense-phase CO2 pipelines in real transportation conditions[J]. Process Safety and Environmental Protection, 2024, 187: 1112-1125. (中科院2区Top,IF 7)
[14] Hou Y., Liu X., Chen L., et al. The influence of CO2/N2/He dilution on CH4–H2-2.5O2 detonation behaviors[J]. International Journal of Hydrogen Energy, 2024, 79: 1009-1018. (中科院2区,IF 8)
[15] Hu Y., Yan X., Chen L., et al. Leakage hazard distance of supercritical CO2 pipelines through experimental and numerical studies[J]. International Journal of Greenhouse Gas Control, 2022, 119: 103730. (JCR 2区,IF 5)
[16] Lv X., Yan X., Lei M., Chen L., et al. Propagation of high-speed hydrogen-air combustion waves through inert gases[J]. Fuel, 2023, 345: 128205. (中科院1区Top,IF 7)
[17] Qi C., Lv X., Wang Y., Chen L., et al. Effects of ethylene addition and dilution on the explosion characteristics of ethane-ethylene mixtures[J]. Energy, 2023, 280: 128047. (中科院1区Top,IF 9)
[18] Qi C., Yu X., Wang Y., Chen L., et al. Investigating the effect of temperature, pressure, and inert gas on the flammability range of ethane/oxygen mixtures[J]. Fuel, 2023, 354: 129296. (中科院1区Top,IF 7)
[19] Shi E., Yan X., Qi C., Chen L., et al. Study on the combustion characteristics and reaction mechanism of aluminum/alcohol-based nanofluid fuel[J]. Combustion and Flame, 2024, 269. (中科院2区Top,IF 4)
[20] Shi E., Yan X., Wang Y., Chen L., et al. Study on the overpressure and flame propagation of ethanol aerosol explosion in a square closed vessel: Effects of equivalence ratio and initial pressure[J]. Fuel, 2024, 374. (中科院1区Top,IF 6)