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    土木工程系
    歐陽劍 教授
    時間:2024年01月15日 09:37 點擊:

歐陽劍  教授  博士生導師 D類高層次人才

聯系方式E-mailouyangjian@hainanu.edu.cnouyangjian87@126.com


基本情況

歐陽劍,男,1987年,湖南永州人。博士、教授、博士生導師、海南大學綠色、智能及數字化交通基礎設施團隊帶頭人。分别于2009年、2011年和2015年獲得哈爾濱工業大學學士、碩士和博士學位,其中博士期間以聯合培養博士生在美國西北大學訪學一年半。先後入選大連理工大學星海骨幹星海優青人才計劃、大連市青年科技之星人才計劃及遼甯省百千萬人才工程計劃萬層次

主要從事交通基礎設施耐久與綠色化技術研究,在乳化瀝青基路面綠色建養技術(預防性養護、路面再生、新型綠色路面材料等)、高性能水泥基灌漿與半柔性複合路面技術、道路結構耐久性與數字化性能仿真等方面取得了較為系統的研究成果。主持科研項目20餘項,包括國家自然科學基金面上項目、青年項目、國家重點研發項目子課題、省基金、省博士啟動基金、省交通廳項目、大連市青年科技之星、星海骨幹星海優青人才項目等縱向項目以及多項橫向項目。發表學術論文70餘篇,包括道路工程領域内國際著名SCI期刊論文70餘篇,如ASCE-Journal of Materials in Civil Engineering, Road Materials and Pavement Design, Construction and Building MaterialsMaterials and StructuresASCE-Journal of Transportation Engineering, Part B: Pavements等。任國際材料與結構研究聯合會(RILEM)高級會員、RILEM-瀝青路面冷再生技術組聯合組長,RILEM-乳化瀝青材料多相表征委員會委員、世界交通運輸大會公路工程學部濱海基礎設施性能評估技術委員會主席、中國流變學專業委員會青年委員;擔任SCI期刊Journal of Traffic and Transportation Engineering (English Editor)SCI期刊Frontiers in Materials4個期刊副主編、編委、青編等。


研究方向

[1] 乳化瀝青基路面綠色建養;

[2] 新型路面材料;

[3] 道路材料結構耐久性與數字化性能仿真。


研究生招生方向

[1] 交通/道路工程;

[2] 土木工程;

[3] 土木工程材料。


學習經曆

[1] 2005/09-2009/07 哈爾濱工業大學,道路橋梁與渡河工程,大學本科/學士;

[2] 2009/09-2011/07 哈爾濱工業大學,道路與鐵道工程,研究生/碩士;

[3] 2011/09-2015/07 哈爾濱工業大學,道路與鐵道工程,研究生/博士。

[4] 2013/09-2015/03 美國西北大學,土木工程,聯合培養博士生


工作經曆

[1] 2024/01 -至今   大連理工大學,海南大學,教授/博導

[2] 2020/07-2023/12 大連理工大學,交通運輸學院,副教授、博導

[3] 2018/01-2020/07 大連理工大學,交通運輸學院,副教授(破格)

[4] 2015/07-2017/12 大連理工大學,交通運輸學院,講師


人才稱号

[1] 遼甯省百千萬人才工程萬層次, 2020 5 月,授予機構:遼甯省人力資源和社會保障廳。(當批次大連理工大學僅 6 人)

[2] 大連市青年科技之星,2020 1 月,授予機構:大連市科技局。

[3] 大連理工大學星海優青2020 3 月,授予機構:大連理工大學。

[4] 大連理工大學星海骨幹2017 12 月,授予機構:大連理工大學。


研究項目

縱向項目

[1] 國家自然科學基金會,面上項目,52178417,路用乳化瀝青破乳過程顆粒堆積影響機制及成膜性能,2021/8/19-2025/12/31,在研,75.4 萬,主持。

[2] 國家自然科學基金會,青年項目,51608096,水泥乳化瀝青砂漿流變性能、破乳行為及其對硬化體性能的影響研究,2017/01-2019/12,完成,28.64 萬,主持。

[3] 科技部,國家重點研發計劃項目,2018YFB1600100,道路基礎設施服役性能智能仿真理論和方法,2019/01-2022/1245 萬(個人負責),結題,子課題負責人。

[4] 科技部,國家重點研發計劃國際合作項目,2016YFE0202400,高寒地區公路設施全壽命周期耐久性提升與安全性保障關鍵技術,2017/9-2020/0815 萬(個人負責),完成,子任務負責人。

[5] 大連市青年科技之星項目,2019RQ009,水泥乳化瀝青冷再生混合料路用性能提升關鍵技術研究,2020/11-2021/12,結題,10萬,主持。

[6] 遼甯省自然基金面上項目,2020-MS-116,乳化瀝青膠漿成膜行為表征方法、影響機制及成膜性能研究,2020/04-2022/04,結題,5萬,主持。

[7] 遼甯省博士啟動基金,闆式無砟軌道水泥乳化瀝青砂漿的破乳行為及控制技術,2016-2018, 結題,5萬,主持。

[8] 湖南省交通運輸廳科技進步與創新項目,202104,基于乳液幹燥成膜行為的冷再生用乳化瀝青品質評價方法與标準,2020/10-2022/1015萬,完成,主持。

[9] 牽引動力國家重點實驗室, 國家重點實驗室開放課題, TPL1708, 自感知CA砂漿及其在無砟軌道中動态性能監測中的應用, 2017/01-2019/12, 10萬元, 結題, 主持。


橫向項目

[10] 山東大山路橋工程有限公司, 企事業委托項目,HX20170469,  乳化瀝青冷再生技術研究,2017/09-2019/12,合同經費100萬,結題,負責人。

[11] 中石油燃料油有限責任公司研究院委托技術開發項目,HX20200480,冷再生用乳化瀝青技術開發及破乳成膜調控機制研究,2020/08-2021/0740萬,結題,負責人。

[12] 上海核工程研究設計院有限公司, 企事業委托項目, HX20220155, 廣東廉江核電項目冷卻塔熱羽擴散碰撞機理研究專題技術服務合同, 2022-02 2022-12, 82.5萬元, 在研, 主持。

[13] 北京工業大學,企事業委托項目, HX20201258,燃燒室界面微細觀組分、結構與力學性能研究,2020/12/2022/0949萬,結題,主持。

[14] 某軍隊委托項目,HX20211253XXX場景三維構建及仿真演示,2021/11-2021/1247萬,結題,主持。

[15] 撫順市交通運輸發展服務中心,HX20220888,寒區重載公路用半柔性複合路面技術研究, 2022/09-2023/124萬,結題,主持。

[16] 撫順市交通運輸發展服務中心,HX20220887,乳化瀝青冷補料技術研究, 2022/09-2023/122萬,結題,主持。

[17] 北京工業大學,企事業委托項目, HX20201107PBX材料動态模量仿真分析,2020/12-2021/124.8萬,結題,主持。

[18] 北京工業大學,企事業委托項目, HX20201106PBX材料細觀建模,2020/12-2021/124.9萬,結題,主持。

[19] 大連理工大學星海優青資助項目,2020/3-2024/02,結題,100萬,主持。

[20] 大連理工大學第四批星海骨幹資助項目,2017/10-2018/12,結題,24萬,主持。

[21] 中央高校基本科研業務費,DUT21JC50,基于分子動力學仿真的乳化瀝青及其膠漿幹燥及成膜機制研究,2021/01-2022/127萬,結題,主持。

[22] 中央高校基本科研業務費,DUT17RC(4)16,漿體流變性能和破乳行為對水泥乳化瀝青混合料路用性能的影響研究,2017/05-2018/127萬,結題,主持。


代表性成果

[1] Chengkai Wang, Jian Ouyang*, Peng Cao, Jinsong Song, Sheng Yu. Development and validation of 3D commercial vehicle multi-body dynamics model to assess dynamic load coefficient, Journal of Transportation Engineering, Part B: Pavements, 2024, Accepted.

[2] Jian Ouyang, Zhao Jiang, Hanweng Yang, Jin Li, Peng Cao. Prediction model of asphalt emulsion evaporation rate based on CFD simulation and genetic programming-based symbolic regression. Construction and Building Materials, 2024, 416: 135021.

[3] Hanwen Yang, Jian Ouyang*, Lifei Feng, Jinping Ou. Fatigue-healing performance evaluation of fiber modified asphalt mixture. ASCE-Journal of Materials in Civil Engineering, 2024, 36(1),04023535. SCIIF=3.651, JCR-Q2

[4] Jian Ouyang*, Yan Meng, Sohrab Zarei, Hanwen Yang. Film formation properties of asphalt emulsion under ambient temperature drying. International Journal of Pavement Engineering, 2023, 24(1), 2185239. SCI, IF: 4.178, JCR-Q1

[5] Jian Ouyang*, Ji Zhou, Peng Cao, Yan Meng. Effect of cement and bitumen emulsion on the drying and film formation of bitumen emulsion paste. ASCE-Journal of Materials in Civil Engineering. 2023, 35(4):04023038. SCIIF=3.651, JCR-Q2

[6] Jian Ouyang*, Wenting Yang, Peng Cao, Baoguo Han. The fracture behaviour of cement bitumen emulsion mixture through the digital image correlation DIC method. International Journal of Pavement Engineering, 2023, 24(1), 2220065. SCI, IF: 4.178, JCR-Q1

[7] Hanwen Yang, Jian Ouyang*, Zhao Jiang, Jinping Ou. Effect of fiber reinforcement on self-healing ability of asphalt mixture induced by microwave heating, Construction and Building Materials, 2023, 362, 129701.SCI, IF: 7.693,中科院一區, ESI高被引論文)

[8] Yan Meng, Jian Ouyang*, Jinping Ou. Investigation on the wetting behavior of asphalt emulsion on aggregate for asphalt emulsion mixture. Construction and Building Materials, 2023, 400: 132844. SCI, IF: 7.693,中科院一區)

[9] Chengkai Wang, Jian Ouyang*, Jingsong Song, Peng Cao, Xuan Wang. Multibody dynamics modelling of a 6-axle truck to quantify the effects of pavement and vehicle parameters on dynamic loads, International Journal of Pavement Engineering, 2023, 24(2): 2281997. SCI, IF: 4.178, JCR-Q1

[10] Sohrab Zarei, Jian Ouyang*, Mohsen Alae, Yanqing Zhao. Fracture behavior of semi-flexible pavement containing cement asphalt emulsion paste. ASCE-Journal of Materials in Civil Engineering. 2023, 35(5):  04023098.SCIIF=3.651, JCR-Q2

[11] Mingjun Hu, Daquan Sun, Guoqiang Sun, Yiren Sun, Jian Ouyang*. Performance study on anti-weather aging combinations for high-content polymer modified asphalt and comparison by improved multi-scale mathematical TOPSIS method. Construction and Building Materials, 2023, 407: 133357.

[12] Jian Ouyang*, Yan Meng. Quantitative effect of droplet size and emulsion viscosity on the storage stability of asphalt emulsion, Construction and Building Materials, 2022, 342, 127994.SCI, IF: 7.693,中科院一區)

[13] Sohrab Zarei, Jian Ouyang*, and Yanqing Zhao. Evaluation of fatigue life of semi-flexible pavement with cement asphalt emulsion pastes, Construction and Building Materials, 2022, 349, 128797. SCI, IF: 7.693,中科院一區)

[14] Hanwen Yang, Jian Ouyang*, Peng Cao, Wen Chen, Baoguo Han, and Jinping Ou. Effect of Steel Wool and Graphite on the Electrical Conductivity and Pavement Properties of Asphalt Mixture, ASCE-Journal of Materials in Civil Engineering, 2022, 34 (3), 04021466.SCIIF=3.651, JCR Q2

[15] Changjun Zhou, Honglin Ren, Jian Ouyang*, ShiaoYan. Research of indoor molding of cold recycled foamed asphalt mixture with secondary hot compaction process considered, Construction and Building Materials, 2022, 326, 126886. SCI, IF: 7.693, 中科院一區)

[16] Xiaowei Chen, Yan Meng, Guihua Hu, Ji Zhou, Jian Ouyang*. Factors Influencing the Droplet Size of Asphalt Emulsion during Fabrication, Coatings, 2022,12 (5), 575. SCI, IF: 3.236, JCR-Q2

[17] Sohrab Zarei, Mohsen Alae, Jian Ouyang*, Yanqing Zhao. Rutting and surface-initiated cracking mechanisms of semi-flexible pavements with cement asphalt emulsion pastes, International Journal of Pavement Engineering, 2022, 1-15.SCI, IF: 4.178, JCR-Q1

[18] Jian Ouyang*, Peng Cao, Taixiong Tang, Yan Meng. Investigation on maximum packing fraction of bitumen particles during emulsion drying, Materials and Structures, 2021, 54(5), 192. SCIIF: 4.285JCR Q2, RILEM頂刊)

[19] Jian Ouyang*, Yan Meng, Taixiong Tang, Miomir Miljković, Yiqiu Tan. Characterization of the drying behaviour of asphalt emulsion, Construction and Building Materials, 2021, 274, 122090. SCI, IF: 7.693,中科院一區)

[20] Jian Ouyang*, Peng Cao, Yan Meng, Taixiong Tang. Investigation on the drying and demulsification process of filler–bitumen emulsion paste, Materials and Structures, 2021, 54 (1), 29. SCIIF: 4.285JCR Q2, RILEM頂刊)

[21] Wenting Yang, Jian Ouyang*, Yan Meng, Baoguo Han, Yuqi Sha. Effect of curing and compaction on volumetric and mechanical properties of cold-recycled mixture with asphalt emulsion under different cement contents, Construction and Building Materials, 2021, 297, 123699. SCI, IF: 7.693,中科院一區)

[22] Chun Li, Jian Ouyang*, Fangjie Dou, Jingtao Shi. Mechanism influencing the drying behavior of bitumen emulsion, Materials, 2021, 14 (14), 3878. SCI, IF: 3.748, JCR-Q1

[23] Chun Li, Jian Ouyang*, Peng Cao, Jingtao Shi,Wenting Yang, Yuqi Sha. Effect of rejuvenating agent on the pavement properties of cold recycled mixture with bitumen emulsion, Coatings, 2021, 11 (5), 520. SCI, IF: 3.236, JCR-Q2

[24] Jian Ouyang*, Yiren Sun, and Sohrab Zarei. Fabrication of solvent-free asphalt emulsion prime with high penetrative ability. Construction and Building Materials, 2020, 230: 117020. SCI, IF: 7.693,中科院一區)

[25] Jian Ouyang*Wenting YangJijiang ChenBaoguo Han. Effect of superplasticizer and wetting agent on the pavement properties of cold recycled mixture with bitumen emulsion and cement, ASCE-Journal of Materials in Civil Engineering, 2020, 32 (6), 04020136. SCIIF=3.651, JCR Q2

[26] Jingtao Shi, Pinhui Zhao, Weiyu Fan*, Ziqiao Yang, Yi Lin, Jian Ouyang*. Facile preparation and application performance evaluation of SBS/C9 petroleum resin blends as modifier for high viscosity asphalt, Construction and Building Materials, 2020, 262, 120073. SCI, IF: 7.693,中科院一區)

[27] Sohrab Zarei, Jian Ouyang*, Wenting Yang, Yanqing Zhao. Experimental analysis of semi-flexible pavement by using an appropriate cement asphalt emulsion paste. Construction and Building Materials, 2020, 230: 116994. SCI, IF: 7.693,中科院一區)

[28]Jian Ouyang*, Lijun Hu, Wengting Yang, Baoguo Han. Strength improvement additives for cement bitumen emulsion mixture. Construction and Building Materials, 2019, 198: 456-464. SCI, IF: 7.693,中科院一區)

[29]Jian Ouyang*, Baofeng Pan, Wen Xu, Lijun Hu. Effect of water content on volumetric and mechanical properties of cement asphalt emulsion mixture. ASCE-Journal of Materials in Civil Engineering, 2019,31(6):04019085. SCIIF=3.651, JCR Q2

[30] Jian Ouyang*, Jiuye Zhao, Yiqiu Tan. Modelling the mechanical properties of cement asphalt emulsion mortar with different asphalt to cement ratio and temperature. ASCE-Journal of Materials in Civil Engineering, 2018, 30(10): 04018263. SCIIF=3.651, JCR Q2

[31] Jian Ouyang*, Baoguo Han, Guangzhao Cheng, Lizhi Zhao, Jinping Ou. A viscosity prediction model for cement paste with nano-SiO2 particles. Construction and Building Materials, 2018, 183, 293-301. SCI, IF: 7.693,中科院一區)

[32] Jian Ouyang*, Lijun Hu, Hongyan Li, Baoguo Han. Effect of cement on the demulsifying behavior of over-stabilized asphalt emulsion during mixing. Construction and Building Materials, 2018, 177, 252-260.SCI, IF: 7.693,中科院一區)

[33] Jian Ouyang*, Surendra P. Shah. Factors influencing the structure build-up of fresh cement asphalt emulsion paste. Road Materials and Pavement Design, 2018, 19(1): 87-103. SCI, IF=3.805, JCR Q2

[34] Tiankai Che, Baofeng Pan*, Jian Ouyang*. The laboratory evaluation of incorporating ceramsite into HMA as fine aggregates. Construction and Building Materials, 2018, 186: 1239-1246. SCI, IF: 7.693,中科院一區)

[35] Jian Ouyang*, Hongyan Li, Baoguo Han. The rheological properties and mechanisms of cement asphalt emulsion paste with different charge types of emulsion. Construction and Building Materials, 2017, 147: 566-575. SCIIF: 7.693,中科院一區)

[36] Jian Ouyang*, Yiqiu Tan, David J. Corr, Surendra P Shah. Viscosity prediction of fresh cement asphalt emulsion pastes. Materials and Structures, 2017, 50(1): 59. SCIIF: 4.285JCR Q2, RILEM頂刊)

[37] Jian Ouyang*, Baoguo Han, Yu Cao, Wenjie Zhou, Wengui Li, Surendra P. Shah. The role and interaction of superplasticizer and emulsifier in fresh cement asphalt emulsion paste through rheology study. Construction and Building Materials, 2016, 125:643-653. SCI, IF: 7.693,中科院一區)

[38] Jian Ouyang*, Yiqiu Tan, David J. Corr, Surendra P Shah. Investigation on the Mixing Stability of Asphalt Emulsion with Cement through Viscosity. ASCE-Journal of Materials in Civil Engineering, 2016: 04016149. SCIIF=3.651, JCR Q2

[39] Jian Ouyang*, David J. Corr, Surendra P Shah. Factors influencing the rheology of fresh cement asphalt emulsion paste. ASCE-Journal of Materials in Civil Engineering, 2016: 04016140. SCIIF=3.651, JCR-Q2

[40] Jian Ouyang*, Yiqiu Tan, David J. Corr, Surendra P Shah. The thixotropic behavior of fresh cement asphalt emulsion paste. Construction and Building Materials, 2016, 114: 906-912. SCI, IF: 7.693

[41] Jian Ouyang, Yiqiu Tan, Yunliang Li, Jiuye Zhao. Demulsification process of asphalt emulsion in fresh cement-asphalt emulsion paste. Materials and Structures, 2015, 48(12): 3875-3883. SCIIF: 4.285JCR Q2

[42] Jian Ouyang*, Yiqiu Tan. Rheology of fresh cement asphalt emulsion pastes. Construction and Building Materials, 2015, 80: 236-243. SCI, IF: 7.693,中科院一區)

[43] Yiqiu Tan, Jian Ouyang*, Yunliang Li. Factors influencing rheological properties of fresh cement asphalt emulsion paste. Construction and Building Materials, 2014, 68: 611-617. SCI, IF: 7.693,中科院一區)

[44] Yiqiu Tan, Jian Ouyang*, Jianfu Lv, Yunliang Li. Effect of emulsifier on cement hydration in cement asphalt mortar. Construction and Building Materials, 2013, 47: 159-164. SCI, IF: 7.693,中科院一區)



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