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必贏官網(wǎng)
學(xué)院簡介
現(xiàn)任領(lǐng)導(dǎo)
機構(gòu)設(shè)置
學(xué)術(shù)機構(gòu)
師資力量
人才招聘
王璐

王璐,博士、教授、博士生導(dǎo)師,江蘇省杰出青年基金獲得者。主要從事結(jié)構(gòu)抗火、現(xiàn)代木結(jié)構(gòu)、人工智能在土木工程中的應(yīng)用等方面研究。以第一或通訊作者發(fā)表SCI論文70余篇,包括Engineering Structures3篇)、Composite structures4篇)等領(lǐng)域頂級刊物論文32篇,其中,ESI高被引論文2篇;出版中、英文專著各1部(均為獨著);主持國家自然科學(xué)基金項目3項、國家重點研發(fā)計劃子課題2項及其余省部級項目7項。研究成果獲2019年中國產(chǎn)學(xué)研合作創(chuàng)新成果一等獎(1/10)、2022年及2016年教育部高??萍歼M步二等獎(3/13)及2016年江蘇省復(fù)合材料科技進步一等獎(2/10);參編全文強制性國家標準《木結(jié)構(gòu)通用規(guī)范》GB55005-2021;入選江蘇省杰青、江蘇省“333 高層次人才培養(yǎng)工程”、“六大人才高峰”及江蘇省“雙創(chuàng)博士”等人才工程。擔(dān)任國家自然科學(xué)基金評審專家,擔(dān)任必贏3003no1線路檢測中心學(xué)報(自然科學(xué)版)副主審及30余本期刊審稿人。

? 主要研究領(lǐng)域:

l 結(jié)構(gòu)抗火設(shè)計

l 現(xiàn)代木結(jié)構(gòu)

l 人工智能在土木工程中的應(yīng)用

? 承擔(dān)的科研項目

項目名稱、編號

項目來源

起止年月

負責(zé)內(nèi)容

單層球面木網(wǎng)殼結(jié)構(gòu)實際火災(zāi)全過程性能劣化機理及損傷智能識別(52378518

國家自然科學(xué)基金面上項目

2024.01-2027.12

主持

火災(zāi)下復(fù)合材料夾芯構(gòu)件多尺度性能演化機理及安全評估研究51678297

國家自然科學(xué)基金面上項目

2017.01-2020.12

主持

溫度—荷載耦合作用下泡沫復(fù)合材料夾層結(jié)構(gòu)界面剝離機理研究(51408305

國家自然科學(xué)基金青年基金項目

2015.01-2017.12

主持

大跨空間木結(jié)構(gòu)建筑火災(zāi)損傷機理及性能化防火設(shè)計(BK20211536

江蘇省杰出青年

基金

2021.07-2024.06

主持

******的研究(******

國家重點研發(fā)計劃子課題

2023.06-2025.12

主持

纖維增強復(fù)合材料性能提升與建筑高效利用的結(jié)構(gòu)設(shè)計理論及方法研究(2017YFC0703001

國家重點研發(fā)計劃子課題

2016.01-2019.12

主持

? 科研成果與獎勵

1、王璐,李凌志,賴勉亨,等(1/10. 服役混凝土結(jié)構(gòu)損傷評估與加固修復(fù)的關(guān)鍵技術(shù)及應(yīng)用. 中國產(chǎn)學(xué)研合作創(chuàng)新成果一等獎,2019.12

2、陸偉東,王建國,王璐,等(3/18. 基于建筑—結(jié)構(gòu)融通的現(xiàn)代木結(jié)構(gòu)綜合性能提升技術(shù)及應(yīng)用,教育部高等學(xué)??茖W(xué)研究優(yōu)秀成果獎(科學(xué)技術(shù))科學(xué)技術(shù)進步獎二等獎,2022.12;

3、劉偉慶,方海,王璐,等(3/13. 新型復(fù)合材料夾芯結(jié)構(gòu)關(guān)鍵技術(shù)、產(chǎn)品研發(fā)及應(yīng)用,教育部高等學(xué)??茖W(xué)研究優(yōu)秀成果獎(科學(xué)技術(shù))科學(xué)技術(shù)進步獎二等獎,2016.12;

4、方海、王璐、劉偉慶,等(2/10. 格構(gòu)增強復(fù)合材料夾芯結(jié)構(gòu)關(guān)鍵技術(shù)創(chuàng)新及應(yīng)用. 江蘇省復(fù)合材料科技進步一等獎,2016.12.

? 代表性論著(按發(fā)表時間倒序)

[1] 王璐. 復(fù)合材料夾層結(jié)構(gòu)理論、設(shè)計與應(yīng)用[M]. 中國建筑工業(yè)出版社, 2019.

[2] Lu Wang. Post-Compressed Plates For Strengthening Reinforced Concrete Structures [M]. Tsinghua University Press, China, 2017.

[3] Lu Wang, Ray Kai Leung Su. Axial Behaviour of Post-Fire RC Columns Strengthened with Post-Compressed Steel Plates. Design, Fabrication and Economy of Metal Structures[M]. Springer, Berlin, Heidelberg, 2013. (A book Chapter).

? 代表性教材(按發(fā)表時間倒序)

[1] 王璐, 陳力, 柯世堂, 莊海洋, 徐鋒, 齊玉軍. 土木工程防災(zāi)減災(zāi)[M]. 科學(xué)出版社, 2020.

[2] 呂恒林, 李延和, 李海濤, 張勤, 張建, 朱虹, 周淑春, 王璐, 劉書奎, 丁北斗, 吳元周, 胡波. 土木工程結(jié)構(gòu)檢測鑒定與加固改造[M]. 中國建筑工業(yè)出版社, 2020.


? 代表性論文(按發(fā)表時間倒序)

1、結(jié)構(gòu)抗火設(shè)計方向(10篇代表作)

[1] Yongwang Zhang, Wentao Zhi, Xiaofei Zhang, Weibin Ni, Chao Xu, Yiming Xu, Lu Wang*. Experimental and numerical study on the validity of the energy-based time equivalent method for evaluating the fire resistance of timber components exposed to travelling fires[J]. Journal of Building Engineering, 2023, 76, 107169. (SCI收錄,Top期刊,JCR一區(qū))

[2] Yongwang Zhang, Xiaofei Zhang, Lu Wang*. Experimental validation and simplified design of an energy-based time equivalent method applied to evaluate the fire resistance of the glulam exposed to parametric fire[J]. Engineering Structures, 2022.272, 115051. (SCI收錄,JCR一區(qū))

[3] Yongwang Zhang, Lu Wang*. Energy-based time equivalent method for evaluating the fire resistance of timber–concrete composite structures exposed to travelling fires[J]. Structure and Infrastructure Engineering, 2022. (SCI收錄,JCR一區(qū))

[4] Yongwang Zhang, Lu Wang*, Li Chen. Energy-based time equivalent approach for evaluating the fire resistance of timber components exposed to realistic design fire curves[J]. Structural Design of Tall and Special Buildings, 2021, 30(11), 1-14. (SCI收錄,JCR一區(qū))

[5] Lingfeng Zhang, Weiqing Liu*, Lu Wang*, Zhibin Ling. On-axis and off-axis compressive behavior of pultruded GFRP composites at elevated temperatures[J]. Composite Structures, 2020, 236: 111891. (ESI高被引論文,  SCI收錄,Top期刊,JCR一區(qū))

[6] Jun Zhou, Lu Wang*. Repair of fire-damaged reinforced concrete members with axial load: a review[J]. Sustainability, 2019, 11(4), 963. (ESI高被引論文, SCI收錄,JCR一區(qū))

[7] Qi Wu, Fangyu Yang, Guoqing Sun, Weiqing Liu, Lu Wang*. Analytical method for determination of temperature-induced interfacial shear stress in foam-core composite sandwich materials[J]. Plastics, Rubber and Composites, 2018, 47(5): 232-239. (SCI收錄,JCR三區(qū))

[8] Xiankun Wang, Yali Ma, Weiqing Liu, Ruifeng Liang, Wang Lu*. Mode I interfacial fracture characterization of foam core sandwich materials at elevated temperatures[J]. Journal of Reinforced Plastics and Composites, 2017, 36(14): 1009-1018. (SCI收錄,JCR二區(qū))

[9] Lu Wang*, Xueming Fan, Hao Chen, Weiqing Liu. Axial crush behavior and energy absorption capability of foam-filled GFRP tubes under elevated and high temperature[J]. Composite Structures, 2016, 149: 339-350. (SCI收錄,Top期刊,JCR一區(qū))

[10] Lu Wang, Ray Kai Leung Su. Repair of fire-exposed preloaded RC rectangular columns by postcompressed steel plates[J]. Journal of Structural Engineering, ASCE, 2014, 140(3): 04013083. (SCI收錄,JCR一區(qū))

2、新材料結(jié)構(gòu)方向(10篇代表作)

[1]  Lu Wang, Yongwang Zhang, Johnny Ho, Mianheng Lai*. Fatigue behaviour of composite sandwich beams strengthened with GFRP stiffeners[J]. Engineering Structures, 2020, 214,110596. (SCI收錄,Top期刊,JCR一區(qū))

[2] Yun Zhang, Weiqing Liu, Chunxiang Yin, Yali Ma, Lu Wang*. Mode II interfacial fracture characterization of foam core sandwich materials at elevated temperatures: the effects of frictional stresses between the crack edges[J]. International Journal of Solids and Structures, 2020, 193-194: 28-38. (SCI收錄,Top期刊,JCR一區(qū))

[3]  Lingfeng Zhang, Weiqing Liu*, Lu Wang*, Zhibin Ling. Mechanical behavior and damage monitoring of pultruted wood-cored GFRP sandwich components[J]. Composite structures, 2019, 215: 502-520. (SCI收錄,Top期刊,JCR一區(qū))

[4] Lu Wang*, Zhimin Wu, Weiqing Liu, Li Wan. Structural behavior of load-bearing sandwich wall panels with GFRP skins and a foam-web core[J]. Science and Engineering of Composite Materials, 2018, 25(1): 173-188. (SCI收錄,JCR三區(qū))

[5] Lu Wang*, Weiqing Liu, Yuan Fang, Li Wan, Ruili Huo. Axial crush behavior and energy absorption capability of foam-filled GFRP tubes manufactured through vacuum assisted resin infusion process[J]. Thin-walled Structures, 2016, 98: 263-273. (SCI收錄,Top期刊,JCR一區(qū))

[6] Yuan Fang, Kai Wang, David Hui, Fujun Xu, Weiqing Liu, Shulan Yang, Lu Wang*. Monitoring of seawater immersion degradation in glass fibre reinforced polymer composites using quantum dots[J]. Composites Part B: Engineering, 2017, 112: 93-102. (SCI收錄,Top期刊,JCR一區(qū))

[7] Lu Wang, Weiqing Liu*, Fai Fang, Li Wan. Behavior of sandwich wall panels with GFRP face sheets and a foam-GFRP web core loaded under four-point bending[J]. Journal of Composite Materials, 2015, 49: 2765-2778. (SCI收錄,JCR二區(qū))

[8] Lu Wang, Weiqing Liu*, Li Wan, Hai Fang, David Hui. Mechanical performance of foam-filled lattice composite panels in four-point bending: Experimental investigation and analytical modeling[J]. Composites Part B: Engineering, 2014, 67: 270-279. (SCI收錄,Top期刊,JCR一區(qū))

[9] Lu Wang, Weiqing Liu*, David Hui. Compression strength of hollow sandwich columns with GFRP skins and a paulownia wood core[J]. Composites Part B: Engineering, 2014, 60: 495-506. (SCI收錄,Top期刊,JCR一區(qū))

[10] Zhimin Wu, Weiqing Liu, Lu Wang*, Hai Fang, David Hui. Theoretical and experimental study of foam-filled lattice composite panels under quasi-static compression loading[J]. Composites Part B: Engineering, 2014, 60: 329-340. (SCI收錄,Top期刊,JCR一區(qū))

3、結(jié)構(gòu)檢測與加固方向(10篇代表作)

[1] Weibin Ni, Hongyu Sun, Lu Wang*, Yongwang Zhang, Xu Lu, Shaojie Wang. Estimation and analysis of the cumulative energy damage model for precast concrete nonrectangular column frame structures[J]. Structures, 2023, 03548. (SCI收錄,JCR一區(qū))

[2] L. Wang, J. Sun, T. Ding, Y. Liang, J.C.M. Ho, M.H. Lai*. Manufacture and behaviour of innovative 3D printed auxetic composite panels subjected to low-velocity impact load[J]. Structures, 2022, 38: 910-933. (SCI收錄,JCR一區(qū))

[3] Lu Wang, Ray Kai Leung Su*. Strengthening of preloaded RC columns by post compressed plates-A review[J]. Structural Engineering and Mechanics, 2018, 65(4): 477-490. (SCI收錄,JCR一區(qū))

[4] Lu Wang, Ray Kai Leung Su*, Bei Cheng, Lingzhi Li, Li Wan, Zhiwei Shan. Seismic behavior of preloaded rectangular RC columns strengthened with precambered steel plates under high axial load ratios[J]. Engineering Structures, 2017, 152: 683-697. (SCI收錄,JCR一區(qū))

[5] Ray Kai Leung Su*, Lu Wang. Flexural and axial strengthening of preloaded concrete columns under large eccentric loads by flat and precambered steel plates[J]. Structure and Infrastructure Engineering, 2015, 11(8): 1083-1101. (SCI收錄,JCR一區(qū))

[6] Lu Wang*, Jin Ou, Weiqing Liu, Shuguang Wang. Full-scale tests and analytical model of the Teflon- based lead rubber isolation bearings[J]. Structural Engineering and Mechanics, 2013, 48: 809-822. (SCI收錄,JCR一區(qū))

[7] Lu Wang, Ray Kai Leung Su*. Theoretical and experimental study of plate-strengthened concrete columns under eccentric compression loading[J]. Journal of Structural Engineering, ASCE, 2012, 139: 350-359. (SCI收錄,JCR一區(qū))

[8] Lu Wang, Ray Kai Leung Su. Experimental investigation of preloaded RC columns strengthened with precambered steel plates under eccentric compression loading[J]. Advances in Structural Engineering, 2012, 15: 1253-1264. (SCI收錄,JCR二區(qū))

[9] Lu Wang, Ray Kai Leung Su*. A unified design procedure for preloaded rectangular RC columns strengthened with post-compressed plates. Advances in Concrete Construction, 2013, 1(2): 163-185. (SCI收錄,JCR三區(qū))

[10] Ray Kai Leung Su*, Lu Wang. Axial strengthening of preloaded rectangular concrete columns by precambered steel plates[J]. Engineering Structures, 2012, 38: 42-52. (SCI收錄,JCR一區(qū))

? 招生專業(yè)

碩士研究生:結(jié)構(gòu)工程,防災(zāi)減災(zāi)及防護工程,土木水利(專業(yè)學(xué)位)。

博士研究生:結(jié)構(gòu)工程,防災(zāi)減災(zāi)及防護工程。

? 聯(lián)系方式

Emailkevinlwang@njtech.edu.cn


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