导师风采
陈思宇
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个人信息

Personal Information

  • 副研究员
  • 导师类别:硕士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:交通学院
  • 所属专业: 交通运输工程
  • 邮箱 : chsy@seu.edu.cn
  • 工作电话 : -

个人简介

Personal Profile

教育经历

2015.08-2019.12,美国密歇根理工大学,土木工程专业,博士

2012.08-2015.04,华南理工大学,道路工程专业,硕士

2008.08-2012.06,东南大学,道路桥梁与渡河工程专业,学士

  

工作经历

2020.09-至今, 东南大学交通学院道路与铁道工程系,副研究员

2020.01-2020.07, 美国密歇根理工大学,土木工程专业,博士后


教授课程

本科生:路基路面工程,道路环境工程

研究生:路面设计原理与方法(全英文),粘弹性路面力学


学术兼职

美国沥青摊铺技术协会(AAPT)会员、国际华人基础设施工作者协会(IACIP)会员,曾任IACIP通讯刊副主编(2016-2018)。

期刊Journal ofRoad Engineering (JRE)青年编委;Journal of Cleaner Production,International Journal of Pavement Engineering, Journal of Materialsin Civil Engineering,Construction and Building Materials, Journal of Testing andEvaluation,InternationalJournal of Pavement Research and Technology等期刊审稿人。


  • 研究方向Research Directions
沥青路面结构及材料研究,多孔材料水传输机理研究,道路材料模型与数值计算,橡胶改性沥青混合料研究
科研项目
  • 国家重点研发计划子课题:道路致灾因子与影响要素监测与分析、多源环境输入参数下的道路基础设施失稳失效模型,2021-至今

  • 企业委托项目:倒装沥青路面结构无机结合料稳定基层优化研究,2021-至今

  • 企业委托项目:沙漠地区超高速公路高安全性能磨耗层关键技术,2021-至今

  • 密歇根环保局科研项目:Using New Rubber Technology to Construct High Volume Traffic Road in Kalamazoo. 2018-2019(主要完成人)

  • 密歇根环保局科研项目:Using Rubberized Overlay to Maintain High Volume Traffic Roads in Dickinson. 2018-2020 (主要参与人)

  • 密歇根交通部科研项目:Testing of HMA Samples from the US-131 30-Year Pilot Project. 2019 (主要完成人)


研究成果

1.Chen, S., You, Z., Yang, S.-L., et al. (2020). Influence of air void structures on the coefficient of permeability of asphalt mixtures. Powder Technology, 377(2021),1-9.

2.Chen, S., Ge, D., Jin, D., et al. (2020). Investigation of hot mixture asphalt with high ground tire rubber content. Journal of Cleaner Production, 277(2020), 124037

3.Chen, S., You, Z., Yang, S.-L., & Zhou, X. (2020). Prediction of the coefficient of permeability of asphalt mixtures using the lattice Boltzmann method. Construction and Building Materials, 240, 117896.

4.Chen, S.,Gong, F., Ge, D., et al. (2019). Use of reacted and activated rubber in ultra-thin hot mixture asphalt overlay for wet-freeze climates. Journal of Cleaner Production, doi: 10.1016/j.jclepro.2019.05.364.

5.Chen, S., Ge, D., Gong, F. et al. (2020). Rheological Properties and Chemical Characterization of Reacted and Activated Rubber Modified Asphalt Binder. Road Materials and Pavement Design, DOI: 10.1080/14680629.2020.1746689.

6.Chen, S., et al., (2019). Material Selections in Asphalt Pavement for Wet-freeze Climate Zones: A Review. Construction and Building Materials, 201, 510-525.

7.Chen, S., Adhikari, S., & You, Z. (2018). Relationship of Coefficient of Permeability, Porosity, and Air Voids in Fine-Graded HMA. Journal of Materials in Civil Engineering, 31(1), 04018359.

8.Chen, S., Yang, X., You, Z., et al., (2016). Innovation of aggregate angularity characterization using gradient approach based upon the traditional and modified Sobel operation. Construction and Building Materials, 120, 442-449.

9.Chen, S., Sharifi, N. P., You, Z., et al., (2019). A Review on the Best Practices in Concrete Pavement Design and Materials in Wet-Freeze Climates Similar to Michigan. Journal of Traffic and Transportation Engineering (English Edition).

10.Zhou, X., Chen, S., Ge, D., et al., (2020). Investigation of asphalt mixture internal structure consistency in accelerated discrete element models. Construction and Building Materials, 244, 118272.

11.Yang, X., Chen, S., & You, Z. (2017). 3D Voxel-Based Approach to Quantify Aggregate Angularity and Surface Texture. Journal of Materials in Civil Engineering, 29(7), 04017031.

12.Ge, D., Chen, S., You, Z., et al., (2019). Correlation of DSR Results and FTIR’s Carbonyl and Sulfoxide Indexes: Effect of Aging Temperature on Asphalt Rheology. Journal of Materials in Civil Engineering, 31(7), 04019115.


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