代表性论文与论著 |
第一作者论文: [1] Wang, P., & Milani, G. (2023). Seismic vulnerability prediction of masonry aggregates: Iterative Finite element Upper Bound limit analysis approximating no tensile resistance. Engineering Structures, 293(July), 116595. (SCI,第一作者) [2] Wang, P., & Milani, G. (2023). Specialized 3D Distinct element limit analysis approach for a fast seismic vulnerability evaluation of massive masonry structures: Application on traditional pagodas. Engineering Structures, 282(February), 115792. (SCI,第一作者) [3] Wang, P., Milani, G., & Li, S. (2022). A novel Lower Bound Limit Analysis model with hexahedron elements for the failure analysis of laboratory and thin infill masonry walls in two-way bending. Engineering Structures, 265(May), 114449. (SCI,第一作者) [4] Wang, P., Li, S., Macchioni, N., Palanti, S., & Milani, G. (2021). Comprehensive evaluation method of historical timber structural building taking fujiu zhou house as an example. Forests, 12(9). (SCI,第一作者) [5] Wang, P., Zhang, W., Li, S., Hu, C., MacChioni, N., Yuan, J., & Zhao, Y. (2018). Minimally Invasive detection technologies for the defects in ancient timber structural building. Key Engineering Materials, 777 KEM, 476–482. (EI,第一作者) 合作论文: [1] Pirsaheb, H., Wang, P., Milani, G., & Habibi, M. (2022). A Multi-Pier-Macro MPM method for the progressive failure analysis of full scale walls in two way bending. Engineering Failure Analysis, 131(June 2021), 105862. (SCI) [2] De Iasio, A., Wang, P., Scacco, J., Milani, G., & Li, S. (2021). Longhu pagoda: Advanced numerical investigations for assessing performance at failure under horizontal loads. Engineering Structures, 244(June), 112715. (SCI) [3] Pirsaheb, H., Wang, P., Javad Moradi, M., & Milani, G. (2021). A Multi-Pier-Macro MPM method for the progressive failure analysis of perforated masonry walls in-plane loaded. Engineering Failure Analysis, 127(June), 105528. (SCI) [4] 李胜才,王佩璇,张苏俊,Nicola, M. (2019). 基于测试和评价的古建木梁材性参数估算,工业建筑. 49(7), 77–82. (中文核心) [5] Li, S., Zhang, L., Tang, J., Ling, D., & Wang, P. (2018). Damage Identification in Timber Structures Based on Wavelet Singular Spectrum Entropy. Mathematical Problems in Engineering, 2018. (SCI) |