英文期刊论文(10篇代表性)
1. Wu, M., Ba, Z., & Liang, J. (2022). A procedure for 3D simulation of seismic wave propagation considering source‐path‐site effects: Theory, verification and application. Earthquake Engineering & Structural Dynamics, 51(12), 2925-2955. (领域Top, ESI热点和高被引)
2. Wu, M., Wang, B., Ba, Z., Dai, K., & Liang, J. (2024). Propagation attenuation of elastic waves in multi-row infinitely periodic pile barriers: A closed-form analytical solution. Engineering Structures, 315, 118480. (领域Top, ESI高被引)
3. Ba, Z., Yu, F., Wu, M.*, Kuo, C., Liang, J., & Pei, Y. (2026). Efficient seismic response modeling for 3D building clusters incorporating site-city interaction: A semi-analytical framework and parametric investigation. Earthquake Engineering & Structural Dynamics, 55(9), 1968-1986. (领域Top)
4. Wang, W., Wang, J., Dai, K., Ba, Z., Wu, M.*, Zhou, B., Sharbati, R., & El Damatty, A. (2025). Seismic fragility analysis of near-fault mountainous wind turbines considering source-path-site effects. Renewable Energy, 254, 123706. (领域Top)
5. Wang, W., Wang, J., Wu, M.*, Dai, K., Liang, C., Ba, Z., & El Damatty, A. (2025). Risk assessment for wind farms using scenario-based ground motion simulations. Engineering Structures, 331, 119976. (领域Top)
6. Ba, Z., Han, S., Li, D., Wu, M.*, & Yang, J. (2026). Full-process seismic damage assessment for urban underground rail transit networks in liquefiable sites. Computers and Geotechnics, 199, 108337. (领域Top)
7. Wu, M., Wang, B., Ba, Z., Dai, K., & Liang, J. (2026). Nonlinear seismic amplification of 3D shallow sedimentary basin incorporating source-to-site effects: A full-process modeling approach. Applied Mathematical Modelling, 153, 116648. (领域Top)
8. Huang, Q., Wang, J., Wu, M.*, Dai, K., & Sharbati, R. (2025). Seismic loss assessment of regional buildings using physics-based broadband ground-motion simulations. Engineering Structures, 341, 120848. (领域Top)
9. Wu, M., Liu, F., & Yang, J. (2022). Seismic response of stratified rock slopes due to incident P and SV waves using a semi-analytical approach. Engineering Geology, 301, 106594. (领域Top)
10. Wang, Y., Wu, M.*, & Yang, J. (2025). Nonlinear seismic analysis of subway station–layered site under obliquely incident shear waves with arbitrary angles. Tunnelling and Underground Space Technology, 163, 106660. (领域Top)
中文期刊论文(10篇代表性)
1. 王斌,唐燕玲,吴孟桃*,苏琪博,李弦,戴靠山,巴振宁. (2026). 山区峡谷地形效应对风电塔地震响应的影响研究. 振动与冲击,45(19):275-285.
2. 戴靠山,卢玉刚,吴孟桃*,李弦,王健泽,巴振宁,何荣华. (2026). 考虑地震波斜入射与软土场地效应的风电塔动力响应特性研究. 工程力学,1-11.
3. 巴振宁,付继赛,王方博,梁建文,吴孟桃. (2025). 基于确定性物理模拟的天津市南开区建筑群设定地震震害风险评估. 建筑结构学报,46(8):167-179.
4. 吴孟桃, 王斌, 巴振宁, 戴靠山, 梁建文. (2024). 基于设定地震的近断层地铁车站结构宽频地震响应分析. 工程科学与技术, 57: 1-15.
5. 吴孟桃, 王斌, 巴振宁, 戴靠山, 梁建文. (2024). 震源-盆地-结构整体物理模型地震模拟:FK-SE-FE方法. 振动工程学报, 37: 1-13.
6. 梁建文, 吴孟桃, 巴振宁. (2022). 频率波数域内地壳层半空间剪切位错源宽频地震波传播模拟. 岩石力学与工程学报, 41(3): 543-558.
7. 梁建文, 吴孟桃, 巴振宁. (2021). 流体饱和半空间二维地形三分量弹性波散射间接边界元模拟. 地球物理学报, 64(8): 2766-2779.
8. 巴振宁, 张家玮, 梁建文, 吴孟桃*. (2020). 地震波斜入射下层状TI饱和场地地震反应分析. 工程力学, 37(5): 166-177.
9. 梁建文, 吴孟桃, 巴振宁. (2019). 软硬交互横向不均匀场地地震反应分析. 岩土工程学报, 41(9): 1599-1608.
10. 刘方成, 杨峻, 吴孟桃*. (2019). 考虑阻尼修正的Pyke滞回模型研究. 岩土工程学报, 41(1): 86-94.