丛晓春
近期热点
资料介绍
个人简历
丛晓春,女,博士(后),教授,博士生导师,就职于山东科技大学土木建筑学院建筑环境与能源工程系。主要从事颗粒物污染防治与人体暴露健康、气溶胶粒子采样技术、建筑环境数值模拟技术、新型节能制冷系统与装备的研发工作。已主持(协作)主持完成了国家科技支撑计划项目、国家自然科学基金、山东省自然科学基金、山东省优秀中青年科学家科研奖励基金等课题,以及十余项企业委托项目;公开发表相关学术论文50余篇,其中SCI、EI收录论文20余篇;已出版著作2部,主编教材1部,获得国家发明专利6项;获省部级科研奖励2项。曾荣获同济大学优秀博士学位论文,山东科技大学3.8红旗手、优秀青年科技工作者、优秀教师、大学生创新优秀指导教师、山东省优秀硕士学位论文指导教师等荣誉称号。1.主要科研经历2005.9—2009.12山东科技大学土木建筑学院讲师2010.9—2014.12山东科技大学土木建筑学院副教授2010.3—2010.8 澳大利亚昆士兰科技大学空气品质与人体健康国际实验室(International Laboratory of Air Quality and Health)访问学者2011.03-2016.02南开大学/交通运输部天津水运工程研究所联合工作站博士后2015.01-2017.12山东科技大学土木建筑学院教授(内聘)2018.01-至今山东科技大学土木建筑学院教授2019.9-至今University of Wisconsin-Platteville.访问学者2.主要科研项目(1)国家自然科学基金青年项目,港口粉尘源风蚀污染的微尺度动力学预测模式研究,2009/01-2011/12,完成,主持(2)山东省中青年科学家奖励基金,港口粉尘源风蚀污染动力学预测模式研究,完成,主持,2008/06-2010/12(3)山东省自然科学基金面上项目,露天开放性颗粒物源强估算的参数化研究,2010/01-2012/12,完成,主持(4)山东省自然科学基金面上项目,气溶胶多分散粒子在空气采样管路中的监测误差辨识,2016/07-2018/12,完成,主持(5)国家科技支撑计划课题,粒子谱仪多分散标定技术研究,2013/01-2016/12,完成,协作主持(6)国家自然科学基金面上项目,动态作业特征下港口散货堆场矿石尘源释放总量估算模式研究,2012/01-2015/12完成,协作主持4.国家授权发明专利(1)丛晓春,刘晴晴.一种港口露天散货堆场粉尘释放总量的估算方法(ZL201510263883.X)(2)丛晓春,栾成洁.外载式无动力大气颗粒物采样器(2013100098217)(3)丛晓春,苏循波.一种煤粉装堆起尘规律的风洞实验方法(20131000577885)(4)丛晓春,杜宏斌.一种监测煤场区防风网遮风效果的方法(2013100395092)(5)丛晓春,陈志龙.一种用于露天开放性颗粒源风蚀释放因子的动力学估算方法 (2011102431022)(6)丛晓春,范秀文.一种具有双重功效的血浆速冻柜(201604599779)5.主要科研奖励(1)2011年获中国港口科技进步奖一等奖(2)2012年获青岛市科技进步一等奖6.主要教学工作主讲研究生课程:高等流体力学,流动与传热的数值计算方法,暖通空调新技术主讲本科生课程:流体力学,流体输配管网,暖通空调,建筑节能,毕业实习,课程实习研究领域
主要从事颗粒物污染防治与人体暴露健康、气溶胶粒子采样技术、建筑环境数值模拟技术、新型节能制冷系统与装备的研发工作。近期论文
1)X. C. Cong, J. J. Zhao, Z. Jing. Indoor particle dynamics in a school office: determination of particle concentrations, deposition rates and penetration factors under naturally ventilated conditions,2018, 40:2511-2524(2)X.C. Cong, G.S. Yang, J.H. Qu. A model for evaluating the particle penetration efficiency in a ninety-degree bend with a circular-cross section in laminar and turbulent flow regions .Powder Technology, 2017, 305:771-781.(3)X. C. Cong, G. S. Yang, J. H. Qu. Evaluating the dynamical characteristics of particle matter emissions in an open ore yard with industrial operation activities. Environmental Science and Pollution Research, 2016, 23:21336-21349.(4)Xiao Chun Cong, Jing Hua Qu . Guo Shu Yang. On-road measurements of pollutant concentration profiles inside Yangkou tunnel, Qingdao, China. Environmental Geochemistry and Health. 2017,39:1179-1190(5)X. C. Cong,S.Q.Cao,Z.L.Chen. Impact of the installation scenario of porous fences on wind-blown particle emission in open coal yards. Atmospheric Environment. 2011, 45:5247-5253.(6)X.C.Cong,S.L.Yang, S.Q.Cao, et.al. Effect of aggregate stockpile configuration and layout on dust emissions in an open yard. Applied Mathematical Modeling.2012,36.5482-5491.(7)X.C.Cong,H.B.Du,S.T.Peng,et al.Field measurements of shelter efficacy for installed wind fences in the open coal yard. Journal of Wind Engineering & Industrial Aerodynamics.2013.117:18-24.(8)Xiaochun Cong,Ya nan Kong, Xiaomin Zhu.Characterization of real-world vehicle emission factors in a road tunnel. Fresenius Environmental Bulletin.2013. 22 (3):789-799 (SCI)(9)Xiaochun Cong,Xiaomin Zhu,Qingqing Liu. Variation of airborne particulate matter in the suburban area of Qingdao, China. 2013,22,3326-3337(10)Xiaochun Cong, Xujie Sun, Wenjiang Xiang, et.al.Study of parametric effects on aqueous ammonia process for removal of SO2.Applied chemistry engineering.2011, 236: 1836-1840(11)Xiao-chuncong, zhi-long Chen. Xiao-min zhu. The dynamics of wind dust particles concentration forecast model (in Chinese). China environmental science. 2012.32 (7) : 1171-1176(12)Xiaochun Cong, zhilong Chen. Dynamic estimation model of open source of particulate matter (in Chinese). Journal of China university of mining, 2011, 9 (40): 823-828(13)Xiaochun Cong, zhilong Chen. Open storage of experimental measurement of the static dust emission (in Chinese). Journal of China university of mining, 2010, 40 (6): 852-856(14)Xiaochun Cong, shuifenZhan. Xuemei Liu. Natural experimental determination of the coal dust under the condition of the surface evaporation characteristics (in Chinese). Journal of coal, 2010, 35 (1) : 93-97.(15)Xiaochun Cong,shuifenZhan. The effects of the windproof net porous application research(in Chinese). Journal of China university of mining, 2009, 38 (2) : 193-196(16)Xiaochun Cong, shuifenZhan. The calculation method of surface friction wind speed of coal dust(in Chinese). Journal of coal, 2008, 33 (3) : 314-317.(17)Xiaochun Cong, Wenfei Yang. Underground confined aquifer water - simulation study of thermal transport properties (in Chinese). Journal of solar energy, 2008, 29 (11) : 1390-1393(18)shuifenZhan,xiaochunCong. Mining protective motivating effect forecast analysis(in Chinese) . Journal of coal, 2008 (9) : 997-1001(19)Xiaochun Cong, guangyu Zhang, shuifenZhan. Numerical calculation of coal dust pollution diffusion motion in the open air (in Chinese). Journal of coal, 2007, 32 (11) : 1138-1141(20)YufengLiu,xiaochun Cong, Xu Zhang, open storage distribution calculation of dust emission (in Chinese). Environment pollution and the prevention and control, 2006, 28 (2) : 146-148(21)Xiaochun Cong, Xu Zhang. Open open air dust near the ground pollution concentration analysis (in Chinese). Journal of Qingdao agricultural university, 2005, 22 (2) : 63-66(22)Xiaochun Cong, Xu Zhang, open source of dust dust trajectory of numerical calculation (in Chinese). Journal of tongji university (natural science edition), 2005, 33 (3) : 330-333.(23)Xiaochun Cong, Yufeng Liu, Xu Zhang. Natural dust-controlling layer mechanical strength analysis under external force (in Chinese). China's mining industry, 2005, 14 (9) : 66-69(24)Xiaochun Cong, Xu Zhang. Windbreak flow field distribution of wind speed prediction (in Chinese). Journal of tongji university (natural science edition), 2004, 32 (1) : 31-34.(25)Xiaochun Cong, XuZhang,. Analysis of characteristics of bao steel in atmospheric boundary layer turbulence (in Chinese). Journal of tongji university (natural science edition), 2004, 32 (9) : 1136-1140.(26)Xiaochun Cong, Xu Zhang, Ming Zhang. In the train compartments of numerical calculation and measurement of the airflow distribution (in Chinese). China railway science, 2003, 24 (5) : 101-105 相关热点
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