教师队伍

王声乐

时间:2022-05-16浏览:1128


 

基本信息:

姓名:王声乐

个人职称、头衔:教授,博士生导师

所属系、团队:道路智能养护技术中心

办公地点:交通大楼407

联系方式:sywang@seu.edu.cn

 

研究方向:

1)沥青路面定向散热结构与材料

2)沥青路面微波修复、整形及预防性养护

 

教育经历:

(1) 1997.22000.2中国科技大学,无机化学,博士学位

(2) 1992.91995.6华东理工大学,化学物理,硕士学位

(3) 1983.91987.6淮北煤炭师范学院,凝聚态物理,学士学位

 

工作经历:

(1) 2008.06-至今  东南大学,道路工程系,教授、博导

(2) 2003.09-2008.09东南大学,物理系,教授、博导

(3) 2002.03-2003.09东南大学, 生物医学工程,副教授、硕导

(5) 2000.08-2002.03 南京大学,博士后

(3) 1995.6-1997.2  淮北煤炭师范学院,物理系,副教授

(4) 1987.6-1992.6  阜新矿业学院,土木工程系,助教

 

科研项目:

1.国家自然科学基金面上项目,高原冻土区沥青路面取向热诱导通道传输机理与结构,2022/01-至今

2.国家科技支撑计划课题,大尺度冻土路基变形控制与稳定技术研究, 2014/01-2016/12

3.教育部高等学校博士学科点专项科研基金,基于缓解城市热岛效应的沥青路面定向热传导增强及结构优化,2013/01-2016/12

4.交通运输部建设科技项目,青藏高原高等级公路冻土环境效应及建设关键技术研究,2014/01-2016/12

5.多年冻土区公路建设与养护技术交通行业重点实验室开放基金,基于单向散热沥青路面的优化梯度结构研究,2013/01-2014/12

6.国家自然科学基金面上项目,高原冻土区单向散热沥青路面材料与结构研究,2010/01-2012/12

7.浙江交工集团研究项目,高等级公路易除冰型路面设计研究,2010/08-2011/08

8.中交寒区道路工程重点实验室开放基金资助项目,高原冻土区单向传热沥青路面的设计和应用,2009/07-2010/07

 

学术成果:

[1] Unilateral heat-transfer asphalt pavement for permafrost protection, QY Zhu, W Wang, SY Wang, XF Zhou, GY Liao, e tal. Cold Regions Science and Technology 71 (2012) 129-138

[2] Thermal conduction and insulation modification in asphalt-based composites, XF Zhou, SY Wang, C Zhou. Journal of Materials Science and Technology 28 (2012) 285-288

[3] The effects of pavement surface characteristics on tire-pavement noise, GY Liao, M. Sakhaeifar, M. Heitzman, R. West, B. Waller, SY Wang, Y Ding. Applied Acoustics 76 (2014) 14-23

[4] Improving the short-term aging resistance of asphalt by addition of crumb rubber radiated by Microwave and impregnated in epoxidized soybean oil, JM Yin, SY Wang, FR Lv. Construction and Building Materials 49 (2013) 712-719

[5] Unidirectional heat-transfer asphalt pavement for mitigating the urban heat island effect, SY Wang, QY Zhu, YN Duan, PD Shang. Journal of Materials in Civil Engineering 26 (2014) 812-821

[6] The Regeneration of aged SBS modified asphalt via re-reticulating SBS particles under gamma irradiation, QY Zhu, C Zhou, SY Wang. Petroleum Science and Technology 32 (2014) 1490-1496

[7] Highly oriented heat-induced structure of asphalt pavement for reducing pavement temperature, YF Du, Shi Q, SY Wang. Energy and Buildings 85 (2014) 23-31

[8] Bidirectional heat induced structure of asphalt pavement for reducing pavement temperature, YF Du, Shi Q, SY Wang. Applied Thermal Engineering 75 (2015) 298-306

[9] A Peg-Top Oriented thermal conductive structure of asphalt pavement for improving urban microclimate, YF Du, SY Wang. Advanced Materials Research 1079 (2015) 469-475

[10] Photocatalytic degradation of vehicle exhausts on asphalt pavement by TiO2 rubber composite structure, W Liu, SY Wang, J Zhang, JF Fan. Construction and Building Materials 81 (2015) 224-232

[11] Improving the performance of asphalt mixture by addition of short-thin wheat straw pieces, JM Yin, SY Wang. International Journal of Pavement Engineering1072954 (2015) 37-41

[12] Cooling asphalt pavement by a highly oriented heat conduction structure, YF Du, Shi Q, SY Wang.Energy and Buildings 102 (2015) 187-196

[13] Intensifying the road performance of asphalt concrete by matching the size distribution of short-thin straw pieces and aggregate framework, JM Yin, SY Wang, YF Du. Journal of Materials in Civil Engineering 27 (2014) 176-184

[14] Inhibition and Removal of Thin Ice on the Surface of Asphalt Pavements by Hydrophobic Method, Yinfei Du, Fujian Li, Shengyue Wang, Xiang Zhu. Journal of Testing and Evaluation 44 (2016)711-718

[15] Oriented heat release in asphalt pavement induced by high-thermal-conductivity rods, YF Du, SY Wang. Applied Thermal Engineering 90 (2015) 424-431

[16] Cooling permafrost embankment by enhancing oriented heat conduction in asphalt pavement, Du Yinfei, Wang Shengyue, Wang Shuangjie, Chen Jianbing, Applied Thermal Engineering 103 (2016) 305-313

[17] Integrative heat-dissipating structure for cooling permafrost embankment, Du Yinfei, Wang Shengyue, Wang Shuangjie, Chen Jianbing, Zhu Dongpeng, Cold Regions Science and Technology 129 (2016) 85-95

[18] Enhancing anti-rutting performance of asphalt pavement by dispersing shear stresses within asphalt layers, Gongyun Liao, Shengyue Wang & Qin Shi. Road Materials and Pavement Design 19 (2018) 453~469

[19] Improving microwave absorption effificiency of asphalt mixture by enriching Fe3O4 on the surface of steel slag Particles, Penghui Miao, Wei Liu, Shengyue Wang. Materials and Structures 134 (2017) 1-12

[20] Increasing Microwave Heating Efficiency of Asphalt-Coated Aggregates Mixed with Modified Steel Slag Particles, Wei Liu, PengHui Miao, ShengYue Wang, Journal of Materials in Civil Engineering 29 (2017): 04017171

[21] Improving microwave heating efficiency of asphalt concrete by increasing surface magnetic loss of aggregates, Wei Liu, Shengyue Wang, Xingyu Gu. Road Materials and Pavement Design 21 (2020) 950-964

[22] A novel solar reflflective coating with functional gradient multilayer structure for cooling asphalt pavements, Lei Jiang, Lichen Wang, Shengyue Wang. Construction and Building Materials 210 (2019) 13-21

[23] Reducing Volume Expansion of Steel Slag by Using a Surface Hydrophobic Waterproof Structure, Lei Jiang, Cong-Lei Dong, Sheng-Yue Wang, Journal of Materials in Civil Engineering 32 (2020) 04020303

[24] Inducing directional heat transfer by enhancing directional thermal conductivity of asphalt mixtures for improving asphalt solar collectors, Lei Jiang, Shengyue Wang, Xingyu Gu, N. Dorjee, Wu Bo. Construction and Building Materials 267 (2021) 121731

[25] Enhancing heat release of asphalt pavement by a gradient heat conduction channel, Lei Jiang, Shengyue Wang. Construction and Building Materials 230 (2020) 117018

[26] Establish directional heat induced structure based on a grouting compound gradient thermal conductivity method,Han Jiang , ShengYue Wang, GuoHao Wang. Construction and Building Materials 325 (2022) 126610

 

奖励及荣誉:

2020年度国家科学技术进步奖(二等奖),“青藏高海拔多年冻土高速公路建养关键技术及工程应用”

2019年度中国公路学会科学技术奖(一等奖),“高寒大温差地区沥青路面建养技术”

2017年度中国公路学会科学技术奖(特等奖),“高原多年冻土高速公路建设关键技术”

2013年度中国公路学会科学技术奖(二等奖),“高等级公路冰雪抑制易除型路面技术”

 

 


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