田黎敏

田黎敏

基本介紹

  • 中文名
  • 學位/學歷
  • 職業
  • 專業方向
  • 任職院校
個人經歷,教育背景,工作履歷,研究領域,學術,學術兼職,科研項目,代表性成果,期刊論文,發明專利,獎勵與榮譽,

個人經歷

教育背景

工作履歷

研究領域

學術

學術兼職

科研項目

5.陝西省創新人才推進計畫—青年科技新星項目,2019KJXX-040,基於不確定性的大跨度空間格線結構抗連續性倒塌性能狀態研究,2019.01 ~ 2020.12

代表性成果

期刊論文

1.Li-min Tian, Jian-peng Wei, Qun-xian Huang, J. Woody. Ju*. Collapse-resistant performance of long-span single-layer spatial grid structures subjected to equivalent sudden joint loads. Journal of Structural Engineering (ASCE). 2021, 147(1): 04020309.(ESI高被引論文)
2.Li-min Tian, Jia-xin He, Cheng-bing Zhang, Rui Bai*. Progressive collapse resistance of single-layer latticed domes subjected to non-uniform snow loads. Journal of Constructional Steel Research. 2021, 176: 106433. (ESI高被引論文)
3.Li-min Tian*, Yue-feng Kou, Hai-liang Lin, Tian-ji Li. Interfacial bond–slip behavior between H-shaped steel and engineered cementitious composites (ECCs). Engineering Structures. 2021, 231: 111731.
4.Li-min Tian*, Jian-peng Wei, Ji-ping Hao. Optimization of long-span single-layer spatial grid structures to resist progressive collapse. Engineering Structures. 2019, 188: 394–405.
5.Li-min Tian*, Ji-ping Hao, Jian-peng Wei, Jiang Zheng. Integral lifting simulation of long-span spatial steel structures during construction. Automation in Construction. 2016, 70: 156–166.
6.Li-min Tian*, Yue-feng Kou, Ji-ping Hao, Lin-wei Zhao. Flexural performance of a lightweight composite floor comprising cold-formed steel trusses and a composite mortar slab. Thin-walled Structures. 2019, 144: 106361.
7.Zheng Tan, Wei-hui Zhong, Li-min Tian*, Bao Meng, Yu-hui Zheng, Xiao-yan Song, Shi-chao Duan. Quantitative assessment of resistant contributions of two-bay beams with unequal spans. Engineering Structures. 2021, 242: 112445.
8.Li-min Tian, Jian-peng Wei, Rui Bai*, Xi-cheng Zhang. Dynamic behaviour of progressive collapse of long-span single-layer spatial grid structures. Journal of Performance of Constructed Facilities (ASCE). 2021, 35(2): 04021002.
9.Yue-feng Kou, Li-min Tian*, Bei-bei Jin. Axial compressive behavior of bamboo slices twining tube‐confined concrete. European Journal of Wood and Wood Products. 2021, https://doi.org/10.1007/s00107-021-01737-8.
10. Jian-peng Wei, Li-min Tian*, Yang Guo, Hui-yun Qiao, Yu Bao, Zhi-an Jiao, Xiao-jun Shi. Novel principle for improving performance of steel frame structures in column-loss scenario. Journal of Constructional Steel Research.(已錄用)
11. Wei-hui Zhong, Zheng Tan, Li-min Tian*, Bao Meng, Yu-hui Zheng, Shi-chao Duan. Collapse-resistant performance of a single-story frame assembly and multi-story sub-frame under an internal column-removal scenario. Steel and Composite Structures. 2021.
12. Li-min Tian, Chong Bai, Wei-hui Zhong*. Experimental study and numerical simulation of partial double-layer latticed domes against progressive collapse in member-removal scenarios. Structures. 2021, 29: 79–91.
13. Li-min Tian*, Dong-ye Li, Wei Li, Yue-feng Kou. Progressive collapse resistance of single-layer latticed domes under different failure conditions at the same joint. Journal of Building Engineering. 2021, 36: 102132.
14. Li-min Tian, Jian-peng Wei, Ji-ping Hao*, Qiu-shuo Wang. Characterization of the flexural behavior of bamboo beams. Journal of Renewable Materials. 2021, DOI: 10.32604/jrm.2021.015166.
15. Wei-hui Zhong, Zheng Tan, Li-min Tian*, Bao Meng, Xiao-yan Song, Yu-hui Zheng. Collapse resistance of composite beam-column assemblies with unequal spans under an internal column-removal scenario. Engineering Structures. 2020, 206: 110143.
16. Zheng Tan, Wei-hui Zhong, Li-min Tian*, Yu-hui Zheng, Bao Meng, Shi-chao Duan. Numerical study on collapse-resistant performance of multi-story composite frames under a column removal scenario. Journal of Building Engineering. 2021, 44: 102957.
17. Zheng Tan, Wei-hui Zhong, Li-min Tian*, Bao Meng, Xiao-yan Song, Shuai-zi Qiu. Research on the collapse-resistant performance of composite beam–column substructures using multi-scale models. Structures. 2020, 27: 86-101.
18. Li-min Tian, Ting Liu, Tian-Ji Li*, Hai-liang Lin. Shear resistance of novel perforated shaped steel-engineered cementitious composite (ECC) connectors. Advanced Steel Construction. 2020, 16(1): 30–36.
19. Li-min Tian, Qi-bing Li, Wei-hui Zhong*, Jian-peng Wei. Effects of the rise-to-span ratio on the progressive collapse resistance of Kiewitt-6 single-layer latticed domes. Engineering Failure Analysis. 2019, 106: 104158.
20. Li-min Tian, Xiao-ning Nie, Wei-hui Zhong*, Jian-peng Wei. Comparison of the progressive collapse resistances of different single-layer latticed domes. Journal of Constructional Steel Research. 2019, 162: 105697.
21. Jian-peng Wei, Li-min Tian*, Ji-ping Hao, Wei Li, Cheng-bing Zhang, Tian-ji Li. Novel principle for improving performance of steel frame structures in column-loss scenario. Journal of Constructional Steel Research. 2019, 163: 105768.
22. Li-min Tian*, Yue-feng Kou, Ji-ping Hao. Axial compressive behaviour of sprayed composite mortar–original bamboo composite columns. Construction and Building Materials. 2019, 215: 726–736.
23. Li-min Tian*, Yue-feng Kou, Ji-ping Hao. Flexural behavior of sprayed lightweight composite mortar-original bamboo composite beams: Experimental Study. BioResources. 2019, 14(1): 500–517.
24. Li-min Tian*, Jian-peng Wei, Ji-ping Hao. Method for evaluating the progressive collapse resistance of long-span single-layer spatial grid structures. Advanced Steel Construction. 2019, 15(1): 109–115.
25. Jian-peng Wei, Li-min Tian*, Ji-ping Hao. Parameter analysis of progressive collapse simulation of long-span spatial grid structures. International Journal of Steel Structures. 2019, 19: 1718–1731.
26. Li-min Tian*, Jian-peng Wei, Ji-ping Hao. Anti-progressive collapse mechanism of long-span single-layer spatial grid structures. Journal of Constructional Steel Research. 2018, 144: 270–282.
27. Jian-peng Wei, Li-min Tian*, Ji-ping Hao. Improving the progressive collapse resistance of long-span single-layer spatial grid structures. Construction and Building Materials. 2018, 171: 96–108.
28. Li-min Tian*, Jian-peng Wei, Ji-ping Hao, Xian-tie Wang. Dynamic analysis method for the progressive collapse of long-span spatial grid structures. Steel and Composite Structures. 2017, 23(4): 435–444.
29. Li-min Tian*, Ji-ping Hao. Nonlinear time-varying analysis algorithms for modeling the behavior of complex rigid long-span steel structures during construction processes, Steel and Composite Structures, 2015, 18(5): 1197-1214.
30. 田黎敏, 李宸, 廖述薈, 寇躍峰, 郝際平*. CFRP約束薄壁圓鋼管—竹條組合柱軸壓性能研究 [J]. 建築結構學報.(已錄用)
31. 田黎敏, 申國臣, 郝際平*, 石宇. 考慮多因素影響的圓竹抗壓強度分級與預測 [J]. 建築結構學報.(已錄用)
32. 魏建鵬, 田黎敏*, 郝際平. 單層空間格線結構抗連續性倒塌的多尺度有限元模型分析 [J]. 建築結構學報, 2019, 40(8): 127–135.
33. 田黎敏, 靳貝貝, 郝際平*. 現代竹結構的研究與工程套用 [J]. 工程力學, 2019, 36(5): 1–18.
34. 田黎敏, 郝際平*, 寇躍峰. 噴塗保溫材料—原竹骨架組合牆體抗震性能研究 [J]. 建築結構學報, 2018, 39(6): 102–109.(F5000論文)
35. 田黎敏, 郝際平*, 寇躍峰. 原竹—保溫材料界面黏結滑移性能試驗研究 [J]. 建築材料學報, 2018, 21(1): 65–70.
36. 田黎敏*, 魏建鵬, 郝際平. 大跨度單層空間格線結構連續性倒塌動力效應分析及簡化模擬方法研究 [J]. 工程力學, 2018, 35(3): 115–124.
37. 田黎敏*, 郝際平, 魏建鵬. 大跨度單層空間格線結構抗連續性倒塌分析 [J]. 建築結構學報, 2016, 37(11): 68–76.
38. 田黎敏*, 魏建鵬, 郝際平.大跨度空間格線結構重要構件評估方法研究 [J]. 湖南大學學報(自然科學版), 2016, 43(11): 39–46.

發明專利

1.田黎敏, 魏建鵬, 郝際平. 一種鋼結構抗倒塌節點, ZL 201810247422.7
2.田黎敏, 魏建鵬, 李偉, 張程冰, 郝際平. 提高空間格線結構抗連續倒塌性能的實現系統及方法, ZL 201910214049.X
3.田黎敏, 魏建鵬, 王文斌, 郝際平. 一種節點破壞試驗裝置, ZL 201710607791.8
4.田黎敏, 魏建鵬, 王文斌, 郝際平. 一種突加荷載試驗裝置, ZL 201610916111.6
5.田黎敏, 魏建鵬, 郝際平. 空間格線結構的通用裝配式節點, ZL 201610398861.9
6.田黎敏, 魏建鵬, 郝際平, 趙海. 大跨度空間格線結構連續倒塌實驗構件初始破壞通用裝置, ZL 201510508624.9
7.田黎敏, 魏建鵬, 郝際平. 空間格線結構連續倒塌實驗初始破壞通用裝置及啟動方法, ZL 201510070351.4
8.田黎敏, 郝際平, 鄭江. 一種原竹樓板、牆與梁的連線結構, ZL201510070351.4
9.田黎敏, 郝際平, 趙淋偉. 一種擱柵與原竹梁的連線結構, ZL201410123347.5

獎勵與榮譽

1.“陝西省青年科技新星”,2019
2.西安建築科技大學首批“雁塔青年學者”,2019
3.陝西省第四屆研究生創新成果二等獎,大跨度空間格線結構抗連續性倒塌分析與最佳化,2018
4.陝西省綠色建築產業科技創新成果二等獎,新型現代多層竹木結構體系研發與套用,2018
5.陝西省科技進步二等獎,大型複雜鋼結構施工時變過程分析及關鍵技術研究與套用,2015
6.西安建築科技大學第七屆“教壇新秀”,2015
7.西安建築科技大學優秀實習指導教師,2014

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