姓名:吳 俊 辦公電話:15601618396 |
岩土工程信息與智能化、固廢資源化利用、月球建造、材料與結構抗沖擊爆炸效應
2008.01~2013.03新加坡國立大學,土木與環境工程系,岩土工程專業,博士研究生
2004.09~2007.07同濟大學,地下建築與工程系,結構工程專業,碩士研究生
1999.09~2004.07 上海師範大學,建築工程學院,土木工程專業,本科生
2023.02~至今 上海師範大學,伟德betvlctor体育官网,教授
2021.12~2023.01上海工程技術大學,城市軌道交通學院,教授
2016.12~2021.11上海工程技術大學,城市軌道交通學院,副教授
2013.11~2016.11上海工程技術大學,城市軌道交通學院,講師(2016.06獲碩士生導師資格)
2015.10~2018.10北京工業大學,伟德betvlctor体育官网,博士後
2012.04~2013.10英國Mott Macdonald工程咨詢有限公司,岩土工程師
國際防護結構協會,會員
中國建築學會智能建造專業委員會,委員
中國土木工程學會岩土工程防振減災專業委員會,委員
中國岩石力學與工程學會岩土工程信息技術與應用分會,理事
上海市土木工程學會岩土力學與工程專業委員會,委員
上海市地質學會城市地質專業委員會,委員
[1] 國家自然科學基金面上項目:幹濕循環-酸性環境侵蝕下地質聚合物固化軟土動态力學性能劣化機理及預測模型研究,2024.01~2027.12
[2] 國家自然科學基金面上項目:近場爆炸作用下UHPC-FST墩柱的性能劣化機理及損傷評估方法,2021.01~2024.12
[3]北京市自然科學基金面上項目:采用鋼網片加固複合水泥基道面層的減災動力性能研究,2017.01~2019.12
[4]天津市土木建築結構防護與加固重點實驗室開放基金:高性能混凝土複合道面闆減災動力性能研究,2017.01~2018.12
[5]教育部留學歸國人員啟動基金:沖擊荷載下新型複合機場道面破壞機理的宏觀數值模拟,2015.07~2016.08
[6]橫向科研項目:爆炸荷載作用下xx隧道結構損傷分析,2021.01~2022.01
[7] 橫向科研項目:xx結構抗侵爆效應數值計算分析,2019.12~2020.12
[8] 橫向科研項目:核爆作用下xx建築毀傷縮比等效性研究,2018.01~2018.12
[9] 橫向科研項目:土壓平衡盾構施工參數敏感性分析研究,2013.10~2014.07
參加科研項目
[1]國家自然科學基金面上項目:大型客機撞擊下核電站屏蔽及附屬廠房的損傷破壞與振動響應研究,2019.01~2022.12,合作單位負責人
[2]北京市自然科學基金面上項目:燃氣爆炸荷載作用下城市綜合管廊安全性評價研究,2018.01~2020.12,參與人
[3] 國家重點基礎研究發展計劃(973)項目子課題:燃(油)氣爆炸條件下工程結構損傷破壞評估方法,2015.01~2019.12,參與人
[4] 新加坡國防部:The Development of Rapid Indoor Blast Effects Assessment Software,2010.01~2012.06,參與人
[5] 新加坡國防部:Development of Advanced Pavement Materials and Cover System for Protection and Mitigation of Airfield Runway,2008.01~2011.12,主要完成人
[1]2020年全國大學生數學建模競賽,上海市二等獎指導教師
[2]2021年全國大學生數學建模競賽,上海市三等獎指導教師
[3]第十六屆中國研究生電子設計競賽,上海市三等獎指導教師
[1]主要起草人,天津市工程建設标準:工程泥漿固化利用技術标準(T/TJKCSJ004-2022)
[1]本科生課程:《工程地質》
[2]研究生課程:《高等土力學》
[1]李 博, 吳 俊, 魏 祥, 李志高, 岩土工程實訓教程[M]. 北京:機械工業出版社,2018
[2]Wu. J, Wu. H, Tan. HW, Chew. SH, Multi-layer pavement system under blast load[M]. Singapore:Springer Nature,2018
[1]吳文傑,李亮,吳俊,姚雲龍,一種用于混凝土類材料抗拉試驗的試件夾具,授權時間:2018-03-13,授權國别:中國,專利号:ZL201721083442.2
[2]吳文傑,李亮,吳俊,姚雲龍,一種矩形長條薄闆型試件抗拉試驗夾具,授權時間:2018-03-30,授權國别:中國,專利号:ZL201721217025.2
[3]征西遙,吳俊,劉秀秀,一種可測量靜止土壓力系數的固結養護裝置,授權時間:2018-07-31,授權國别:中國,專利号:ZL201821221876.9
[4]姚雲龍,李亮,吳俊,吳文傑,一種金屬鋼闆組合鉸支座,授權時間:2018-08-03,授權國别:中國,專利号:ZL201721911944.X
[5]劉文麗,李亮,吳俊,吳文傑,姚雲龍,一種用于網狀或片狀材料拉伸實驗夾具,授權時間:2018-12-21,授權國别:中國,專利号:ZL201820662228.0
[6]吳文傑,李亮,吳俊,劉文麗,吳朦,楊雨珊,一種用于固定拉伸試件貼片的模具,授權時間:2019-01-11,授權國别:中國,專利号:ZL201821072297.2
[7]姚雲龍,李亮,吳俊,吳文傑,一種金屬鎖鍊-鋼纖維混凝土梁構件,授權時間:2019-05-17,授權國别:中國,專利号:ZL201710336976.X
[8]曹晨,吳俊,一種用于混凝土闆的爆炸試驗裝置,授權時間:2020-10-13,授權國别:中國,專利号:ZL202022270075.5
[9] Sun Yuyan,Wang Ziguo,Cheng Shuzhen,Wu Jun,Corrosion-driven intelligent fiber, preparation method and application thereof,授權時間:2020-10-20,授權國别:澳大利亞,專利号:AU2019284139
[10] 孫宇雁,王子國,程淑珍,吳 俊,腐食駆動型スマート繊維及びその調製方法及び応用,授權時間:2022-02-24,授權國别:日本,專利号:特許第7029866号
在國内外學術期刊以及會議論文集上發表論文近70篇,其中SCI/EI收錄50餘篇,代表性論文如下:
英文文章:
[36] Li. L, Li. Z, Wu. J*, Li. T et al., Influence of strain rate and fiber blend mode on the tensile behaviors of steel-polyethylene hybrid fiber reinforced engineered cementitious composites[J], Construction and Building Materials, 2024:438:137306
[35] Li. L, Zheng. X, Wu. J*, Zhang. J et al.,Performance of the one-part geopolymer stabilized soft clay under acids attack[J], Journal of Cleaner Production, 2024:452:142183
[34] Yao. C, Hu, G, Chen. Q, Wu. J*, Prediction on the freeze-thaw resistance of a one-part geopolymer stabilized soil by using deep learning method[J].Case Studies in Construction Materials, 2024:21:e03530
[33] Chen. Q, Hu. G, Wu. J*, Comparative study on the prediction of the compressive strength of the one-part geopolymer stabilized soil by using different hybrid machine learning models[J].Case Studies in Construction Materials, 2024:21:e03439
[32] Li. S, Zhou. Z, Hu. G, Wu. J*, Preparation and evaluation of GCD-1 lunar regolith simulant based geopolymer activated by solid sodium silicate[J].Case Studies in Construction Materials, 2024:20:e03273
[31] Li. L, Zheng. X, Wu. J*, Du. X, Luan. Y, Comparative study on the dynamic tensile properties of polypropylene and polyethylene fiber reinforced engineered cementitious composites under low to high strain rates[J], Journal of Building Engineering, 2024:82:108221
[30] Li. L, Wang. Z, Wu. J, Du X et al., Comparative analysis of dynamic mechanical properties of steel fiber reinforced concrete under ambient temperature and after exposure to high temperatures[J].Case Studies in Construction Materials, 2023:e02778
[29] Min. Y, Gao. M, Yao. C, Wu. J, Wei. X, On the use of one-part geopolymer activated by solid sodium silicate in soft clay stabilization[J], Construction and Building Materials, 2023:402:132957
[28] Zhang. H, Wu. J, Zhang. C, Dong. Y, Water adsorption on kaolinite basal and edge surfaces[J]. Langmuir, 2023:39(22):7539-7547
[27] Min. Y, Wu. J*, Li B, Physicochemical and mechanical behavior of the one-part geopolymer mortar exposed to hydrochloric and sulfuric acids[J]. ASCE Journal of Materials in Civil Engineering, 2023:35(3):04022456
[26] Liu. Z, Wu. J*, Cao. C, Li. S, Yan. Q, Dynamic performance and damage assessment of a shallow buried tunnel under internal explosion[J]. Tunnelling and Underground Space Technology, 2023:133:104918
[25] Gao. B, Wu. J*, Zhao. R, Feng. X, Wang. Z, Residual seismic resistance of CFDST columns after a close-in explosion: Experimental study[J]. Structures, 2023:48:1082-1101
[24] Gao. B, Wu. J*, Chen. Q, Yu. J, Yu. H, Effect of spraying polyurea on the anti-blast performance of the ultra-high performance concrete slab[J].Sensors, 2022:22(24):9888
[23] Liu. Z, Wu. J*, Chen. Q, Yu. H, Analysis on the vulnerability of a tunnel entrance under internal explosion[J].Sensors, 2022:22(24):9727
[22] Liu. Z, Wu. J*, Yu. J et al., Damage assessment of normal reinforced concrete panels strengthened with polyurea after explosion[J].Case Studies in Construction Materials, 2022:17:01695
[21] Min. Y, Wu. J*, Li. B, Experimental study on the freeze-thaw resistance of the one-part geopolymer paste[J].Case Studies in Construction Materials, 2022:17:01269
[20] Wu. J, Liu. Z, Yu. J et al., Experimental and numerical investigation of normal reinforced concrete panel strengthened with polyurea under near-field explosion[J].Journal of Building Engineering, 2022:46:103763
[19] Li. L, Wang. H, Wu. J* et al., Experimental and numerical investigation on impact dynamic performance of steel fiber reinforced concrete beams at elevated temperatures[J].Journal of Building Engineering, 2022:47:103841
[18] Min. Y, Wu. J, Li. B, Dynamic shear modulus and damping ratio of the one-part geopolymer stabilized soft clay[J].ASCE Journal of Materials in Civil Engineering, 2022:34(7):04022120
[17] Gao. B, Wu. J*, Jia P et al., Experimental and numerical investigation of the polyurea coated ultra-high performance concrete (UHPC) column under lateral impact loading[J].International Journal of Structural Stability and Dynamics, 2022:22(7):2250037
[16] Li. L, Wang. Z, Wu. J, Du X et al., Comparative study on the dynamic mechanical properties of steel fiber reinforced concrete at high temperatures and after high temperature cooling[J].Construction and Building Materials, 2022:346:128448
[15] Wu. J, Min. Y, Li. B, Zheng. X, Stiffness and strength development of the soft clay stabilized by the one-part geopolymer under one-dimensional compressive loading[J].Soils and Foundations, 2021:61(4):974-988
[14] Min. Y, Wu. J*, Li. B, The effects of fly ash content on the strength development of soft clay stabilized by one-part geopolymer under curing stress[J].ASCE Journal of Materials in Civil Engineering, 2021:33(10):04021274
[13] Zheng. X, Wu. J*, Early Strength development of soft clay stabilized by one-part ground granulated blast furnace slag and fly ash based geopolymer[J].Frontiers in Materials, 2021:8:616430
[12] Wu. J, Liu. X, Wu. H et al., Dynamic compressive behavior of asphalt concrete material under impact load[J].ASTM Journal of Testing and Evaluation, 2020:48(4):2768-2785
[11] Yan. Q, Liu. C, Wu. J* et al., Experimental and numerical investigation of reinforced concrete pile subjected to near-field non-contact underwater explosion[J].International Journal of Structural Stability and Dynamics, 2020:48(4):2040003
[10] Wang. Z, Wu. H, Fang. Q, Wu. J, Experimental study on the residual axial capacity of ultra-high performance cementitious composite filled steel tube column under contact explosion[J].Thin-Walled Structures, 2020:147:106515
[9] Wang. Z, Wu. H, Fang. Q, Wu. J, Numerical study on the residual axial capacity of ultrahigh performance cementitious composite filled steel tube (UHPCC-FST) column under contact explosion[J].Thin-Walled Structures, 2020:153:106832
[8] Wang. Z, Wu. H, Wu. J, Fang. Q, Experimental study on the residual seismic resistance of ultra-high performance cementitious composite filled steel tube (UHPCC-FST) after contact explosion[J].Thin-Walled Structures, 2020:154:106852
[7] Yu. J, Gan. Y, Wu. J*, Wu. H, Effect of concrete masonry infill walls on progressive collapse performance of reinforced concrete infilled frames[J].Engineering Structures, 2019:191:179-193
[6] Wu. J, Liu. X, Zhou. H, Li. L, Liu. Z, Experimental and numerical study on soft-hard-soft (SHS) cement based composite system under multiple impact loads[J].Materials and Design, 2018:139:234-257
[5] Ali. S, Liu. X, Thambiratnam. D, Gu. Y, Wu. J, Parametric study on cement treated aggregate panel under impact load[J].Archives of Civil and Mechanical Engineering, 2018:18:622-629
[4] Wang. G, Yuan. M, Miao. Y, Wu. J, Wang. Y, Experimental study on seismic response of underground tunnel-soil-surface structure interaction system[J].Tunnelling and Underground Space Technology, 2018:76:145-159
[3] Wu. J, Liu. X, Performance of soft-hard-soft (SHS) cement based composite subjected to blast loading with consideration of interface properties[J].Frontiers of Structural and Civil Engineering, 2015:9(3):323-340
[2] Wu. J, Liu. X, Chew. SH, Parametric study on cement based soft-hard-soft (SHS) multi-layer composite pavement against blast load[J].Construction and Building Materials, 2015:98:602-619
[1] Wu. J, Chew. SH, Field performance and numerical model of multi-layer pavement system for blast load[J].Construction and Building Materials, 2014:52:177-188
中文文章:
[13] 鄭溢雯, 吳 俊*, 楊愛武, 李 博, 顧 珑, 采用固體矽酸鈉激發的一步法地質聚合物在軟土固化中的适用性研究[J].岩土力學, 2024:45(7):2072-2084
[12] 蔣新彧, 征西遙, 吳 俊*, 楊愛武, 李 博, HNO3和H2SO4侵蝕作用下地質聚物固化軟土的抗酸性能研究[J].岩土力學, 2024:
[11] 朱 強, 戶 國, 吳 俊*, 聚酯纖維對一步法地質聚合物固化軟土增韌性的試驗研究[J].工程地質學報, 2024:
[10] 杜 剛, 李 亮, 王子晨, 吳 俊, 杜修力,碳纖維混凝土高溫冷卻後動态壓縮性能試驗研究[J].材料導報, 2024:
[9] 周兆鵬, 闫秋實, 田栓柱, 吳 俊, 李建武, 爆炸荷載作用下裝配式鋼筋混凝土闆抗爆性能試驗研究[J].天津大學學報(自然科學與工程技術版), 2022:55(6):611-620
[8] 李 亮, 栾贻恒, 吳 俊, 杜修力, 吳文傑, 鋼網片-聚乙烯纖維增強水泥基複合材料中低速動态拉伸性能試驗研究[J].材料導報, 2022:36(5):1-6
[7] 劉子超, 吳 俊*, 喻 君, 馮曉偉, 爆炸荷載作用下鋼筋混凝土構件縮尺效應的數值模拟研究[J].結構工程師, 2022:38(4):16-28
[6] 吳 俊, 征西遙, 楊愛武, 李延波, 礦渣-粉煤灰基地質聚合物固化淤泥質土的抗壓強度試驗研究[J].岩土力學, 2021:42(3):647-655
[5] 征西遙, 劉秀秀, 吳 俊*, 董 毅, 超細水泥對固化軟土早期抗壓強度影響的試驗研究[J].工程地質學報, 2020:28(4):685-696
[4] 彭 帥, 李 亮, 吳 俊, 姜錫權, 杜修力, 高溫條件下鋼纖維混凝土動态抗壓性能試驗研究[J].振動與沖擊, 2019:38(22):149-154
[3] 黃振恩,吳 俊*,張 洋,考慮流固耦合效應的盾構隧道開挖面穩定性研究[J]. 現代隧道技術, 2018:50(5):61-71
[2] 吳 俊, 李 亮, 杜修力, 沖擊荷載作用下新型多層道面體系動态性能試驗[J].天津大學學報(自然科學與工程技術版), 2017:50(12):1321-1328
[1] 吳 俊, 杜修力, 李 亮, 中高應變率下瀝青混凝土動力增長系數研究[J].天津大學學報(自然科學與工程技術版), 2017:50(9):921-930
每年拟招收碩士生1~2名,歡迎報考!