梅德清
近期热点
资料介绍
个人简历
学习、工作经历1993.09—1997.06 江苏理工大学内燃机专业 学士1997.09—2000.06 江苏理工大学动力机械及工程专业 硕士2000.09—2005.12 江苏大学动力机械及工程专业 博士1997.07—至今 江苏大学汽车学院工作主 讲 课 程《内燃机排放与控制》、《CAE应用基础》研 究 方 向梅德清,男,工学博士,副教授。1997年本科毕业于江苏理工大学。后师从国内著名学者高宗英教授,并于2005年获得博士学位。2008年被江苏大学聘为副教授。主要从事生物质替代能源、清洁燃料与燃烧、汽车尾气排放测试及控制技术机理等领域的研究工作,参与构建江苏省清洁能源重点实验室及生物柴油动力机械工程研究中心等科研平台,积极凝练高效环保节能型非道路动力机械的学科特色。曾获部省级科技进步二等奖1项、三等奖2项。近5年来,主持或参与国家自然科学基金项目4项和江苏省重点研发计划项目1项,以第一作者发表SCI论文15篇以及EI论文9篇,主编《内燃机百问》科普读物并获得第十届江苏省优秀科普作品三等奖。自2003年始,参与江苏大学汽车与发动机排放重点实验室的建设与维护运营工作。依托先进的实验设备和较强的科技服务能力,为苏、浙、沪、鲁、闽、渝等地汽车、发动机及相关零部件企业提供技术支持及人才培养等科技服务,强化了校企合作与联系,极大地提升了江苏大学动力机械学科在发动机及汽车行业内的影响。科 研 项 目01. 主持国家自然基金面上项目1项,起止日期:2019.01-2022.1202. 参与国家自然基金面上项目1项,起止日期:2019.01-2022.1203. 参与国家自然基金国际合作项目1项(子课题负责人),起止日期:2017.07-2020.0604. 参与江苏省科技厅重点研发项目1项(合作项目,校内负责人),起止日期:2016.07-2019.0605. 参与国家自然基金青年基金项目1项(合作项目,校内负责人),起止日期:2016.01-2018.12科研成果及奖励[1] 2011.02.25获得江苏省人民政府授予的2010年度江苏省科学技术奖三等奖。(低排放生物柴油发展战略研究与产业化关键技术。证书编号:2010-3-23-R3)[2] 2009.12.30获得中国机械工业联合会授予的中国机械工业科学技术奖二等奖。(生物柴油配制、燃烧与排放污染物控制技术。证书编号:0911018-03)[3] 2009.12.08获得汽车工业科技进步奖励基金会授予的汽车工业科技进步奖三等奖。(生物柴油配制、燃烧与排放污染物控制技术。证书编号:09-01-08)[4] 2013.11获江苏大学首届英语讲课比赛三等奖。[5] 2013.07获江苏大学2012-2013年度“教书育人”先进个人。[6] 2019.10 《内燃机百问》获第十届江苏省优秀科普作品三等奖研究领域
""近期论文
[1] Deqing Mei, Lei Zuo, Derick Adu-Mensah, et al. Combustion characteristics and emissions of a common rail diesel engine using nanoparticle-diesel blends with carbon nanotube and molybdenum trioxide. Applied Thermal Engineering, 2019, 162: 114238.[2] Derick Adu-Mensah, Deqing Mei, Lei Zuo, et al. A review on partial hydrogenation of biodiesel and its influence on fuel properties. Fuel, 2019, 251: 660-668.[3] Deqing Mei*, Chao Sun, Lichang Li, et al. Evaporation characteristics of fuel sessile droplets with nanoparticles. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2019, 41(6): 677-688.[4] Deqing Mei*, Zongning Zhu, Congwei Mei, et al. Fractal morphology features and carbon component analysis of diesel particulates. Environmental Science and Pollution Research, 2019, 26(14): 14014-14023.[5] Deqing Mei*, Hengquan Wang, Pengfei Dai, et al. A statistical analysis of emission features in non-road small SI engines with the same displacement. IMechE, Part D: Journal of Automobile Engineering, 2018, 232(11): 1431-1437.[6] Deqing Mei*, Lizhi Tu, Shan Yue, et al. Simulation of combustion process and pollutant generation in a PCCI diesel engine with adaptable multiple injection. Journal of Energy Engineering, 2018, 144(5): 04018051.[7] Deqing Mei*, Shan Yue, Xiaodong Zhao, et al. Effects of center of heat release on combustion and emissions in a PCCI diesel engine fueled with DMC-diesel blend. Applied Thermal Engineering, 2017,114(3):969-976.[8] Deqing Mei*, Chao Sun, Meng Gu, et al. Physical and chemical property and thermogravimetric performance of hydrogenated biodiesel. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2017, 39(16):1739-1745.[9] Deqing Mei*, Xiaodong Zhao, Han Wu, et al. Effects of enriched oxygen/nitrogen intake on combustion process and emission features in a diesel engine. Journal of Energy Engineering, 2017, 143(3), 04016062.[10]Deqing Mei*, Yanqiang Luo, Wenbing Tan, et al. Crystallization behavior of fatty acid methyl esters and biodiesel based on differential scanning calorimetry and thermodynamic model. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2016, 38(15): 2312-2318.[11]Deqing Mei*, Yanqiang Luo, Wenbing Tan, et al. Comparative study of the transient emission profiles of a light-duty vehicle powered by petrodiesel and a light-duty vehicle powered by biodiesel (Jatropha curcas). IMechE, Part D: Journal of Automobile Engineering, 2016, 230(1):93-102.[12]Deqing Mei*, Xianming Li, Qimin Wu, et al. Role of cerium oxide nanoparticles as diesel additives in combustion efficiency improvements and emission reduction. Journal of Energy Engineering, 2016, 142(4), 04015050.[13]Deqing Mei*, Shan Yue, Xiaodong Zhao, et al. Combustion features under different center of heat release of a diesel engine using dimethyl carbonate/diesel blend. International Journal of Green Energy, 2016, 13(11):1120-1128.[14]Deqing Mei*, Yue Shan, Wu Han, et al. Effect of Co3O4 on the kinetics of thermal decomposition of diesel particulate matter. Emerging Materials Research. 2016, 5(1): 100-109.[15]Deqing Mei*, Han Wu, Hua Ren, et al. Combustion cycle-by-cycle variations in a common-rail direct injection engine fueled with dimethyl carbonate-diesel blend. Journal of Energy Engineering, 2016, 142(1): 04014059. 相关热点
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