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LV Yang
Author:  Date:2019-12-07  Clicks:

School: School of Civil Engineering

Appointment: Associate Professor

Education:

1. 2003.09 - 2007.06: BEng, Civil Engineering, School of Civil Engineering, Tianjin University, Tianjin, China

2. 2007.09 - 2012.06: Ph.D., Structural Engineering, School of Civil Engineering, Tianjin University, Tianjin, China

Research Interest:

1. Structural Analysis of Large and Complex Structures

2. Seismic Engineering

3. Structural Vibration Reduction and Control

Academic Membership:

1. Member of the Youth Committee of Infrastructure Earthquake Preparedness and Disaster Reduction of China Earthquake Society, 2018 to the present.

2. Young Member of Youth Committee on Structural Vibration Control and Health Monitoring, 2019 to the present.

Awards:

1. Receipt of Tianjin Youth Talent Support Program (2019)

2. Young Scholars of Tianjin Distinguished Professor (2020)

3. Member of the Second level “131” Innovative Talent Training Project in Tianjin (2016)

4. Two Second Prizes of Tianjin Science and Technology Progress Award (2018 and 2019)

Scientific Projects:

1. Damage evolution mechanism and damage process control of steel frame-concrete core tube structures under earthquake excitations. Sponsored by the National Science Foundation of China under grant number of 51508373. 2016.01-2018.12. PI

2. Studies on the seismic and vibration reduction of the building structures on the subway. Sponsored by the Tianjin Basic Research Program under grant number 16JCZDJC38900. 2016.04-2019.03. PI

3. Dynamic failure mechanisms and damage evaluation of high performance structural members. Sponsored by the National Key Research and Development Program of China under grant number 2016YFC0701100, 2017.01-2020.12. PI

Representative Publications:

1. Zhong-Xian Li, Yang Lv, Long-he Xu, Yang Ding, Qiu-hong Zhao. Experimental studies on nonlinear seismic control of a steel-concrete hybrid structure using MR dampers [J]. Engineering Structures, 2013, 49(4): 248-263. WOS: 000317528800020

2. Yang Lv, Zhong-Xian Li, Long-he Xu, Yang Ding. Equivalent seismic performance optimization of steel structures based on nonlinear damage analysis [J]. Advances in Structural Engineering, 2015, 18(7): 941-958. (WOS: 000357083100001)

3. Yang Lv, Zhong-Xian Li. Influences of the gravity loads on the cyclic performance of unstiffened steel plate shear wall [J]. Structural Design of Tall and Special Buildings, 2016, 25(17): 988-1008. (WOS: 000387778700007)

4. Yang Lv, Zheng Zhao, Jia-Qi Lv, Nawawi Chouw, Zhong-Xian Li. A stress distribution of thin rectangular steel wall under a uniform compression [J]. International Journal of Structural Stability and Dynamics, 2020, 20(03): 2050037. (WOS:000531730400010)

5. Yang Lv, Ling Li, Di Wu, Yu Chen*, Zhong-Xian Li, Nawawi Chouw. Shear-displacement diagram of steel plate shear walls with precompression from adjacent frame columns [J]. Structural Design of Tall and Special Buildings, 2019, 28(5): e1585. (WOS:000462257100002)

6. Yang Lv, Zhong-Xian Li, Guoxing Lu. Shear capacity prediction of steel plate shear walls with pre-compression from columns [J]. Structural Design of Tall and Special Buildings, 2017, 26(12): 1-8. E1375. (WOS: 000405545900002)

7. Yang Lv, Ying Zhang, Neng Gong, Zhong-Xian LI, Guoxing Lu*, Xinmei Xiang*. On the out-of-plane compression of a Miura-ori patterned sheet [J]. International Journal of Mechanical Sciences, 2019, 161: UNSP 105022. (WOS: 000496863500012)

8. Yang Lv, Zheng Zhao, Jia-Qi Lv, Zhong-Xian Li, Nawawi Chouw. Determination of shear strength of steel shear walls with three different vertical stress distributions for considering the gravity load effect [J]. Journal of Constructional Steel Research, 2020, 170: 106113. (WOS:000541132300027)

9. Yang Lv, Jia-Qi Lv, Zheng Zhao. Vertical stress distributions of a thin rectangular steel wall under compression and in-plane bending, International Journal of Structural Stability and Dynamics, 2020, 20(8): 2050037.

10. Yang Lv, Xiao-Hui Sun, Jing Ling, Nawawi Chouw. Rocking Response of Free-Standing Rigid Blocks on Slopes, International Journal of Structural Stability and Dynamics, 2020, accepted.

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