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  • 李安略

    的个人主页 http://shi.buaa.edu.cn/lianlve/zh_CN/index.htm

  • 主要任职:博士后
个人简介

李安略,博士,智能结构动力学与设计实验室博士后

研究方向为超材料/周期结构动力学与波传导理论,及其在航空发动机典型薄壁结构振动抑制、水下潜航器减振降噪中的应用。主持国家自然科学基金、校企合作项目2项,共发表SCI、EI论文14篇,发明专利1项,担任Journal of Engineering for Gas Turbines and Power期刊审稿人。

期刊论文:

  1. Wang W, Fan Y, Shi J, et al. A Symplectic Numerical Power Flow Framework Based on Wave Finite-Element Method for Assembled Structural Systems[J]. Journal of Sound and Vibration, 2026: 119627.

  2. Li A, Wang W, Fan Y, et al. Mistuning identification of blisk based on antiresonance[J]. Mechanical Systems and Signal Processing, 2025, 239: 113307.

  3. Fan Y, Fan J, Li A, et al. Physics-Informed Neural Network Surrogate Model for Small-Sample Mistuned Bladed Disk[J]. AIAA Journal, 2024.

  4. Li D, Wang J, Li H, et al. A Frequency Domain PID Control Strategy for an In-House Friction and Wear Test Rig[J]. Aerospace, 2024, 11(8): 623.

  5. 范雨, 李合霂, 李安略, 等. 基于反共振的整体叶盘失谐识别[J]. 航空动力学报, 2025, 40(4):20240506.

  6. Li A, Fan Y, Wu Y, et al. Retuning the disordered periodic structures by sorting unit cells: Numerical analyses and experimental studies[J]. Journal of Sound and Vibration, 2023, 566: 117925.

  7. Li A, Fan Y, Wang H, et al. Mistuning identification and model updating of a blisk with piezoelectric excitation components[J]. Journal of Vibration and Control, 2023: 10775463231218481.

  8. Wang W, Li A, Fan Y, et al. Detecting bolt looseness of flanged joint based on multiple-mode conversion[J]. Structural Health Monitoring, 2024: 14759217241286443.

  9. Li A, Wu Y, Fan Y, et al. Sorting strategy to retune the disordered periodic structures regarding vibration reduction in band gaps[J]. Frontiers in Mechanical Engineering, 2022, 8: 930946.

会议论文

  1. Fan Y, Fan J, Li A, et al. A Physics-Informed Neural Network Surrogate Model for Mistuned Bladed Disks Dynamics[C]//Turbo Expo: Power for Land, Sea, and Air. American Society of Mechanical Engineers (GT), 2024, 88032: V10BT27A016.

  2. Li A, Fan Y, Wu Y, et al. A stiffener layout design method for vibration reduction in a wide frequency band[C]//Asia-Pacific International Symposium on Aerospace Technology (APISAT). Singapore: Springer Nature Singapore, 2023: 810-822.

  3. Fan Y, Hao W,  Li A, et al. A Progressive and Forward Design Method for Broadening the Band gap of a Metashaft. 31st International Congress on Sound and Vibration (ICSV31).  Paper ID: 218.

  4. Fan Y, Yu H,  Li A, et al. Design and Validation of Coupled Band Gaps in Unilateral Curved Beams. 31st International Congress on Sound and Vibration (ICSV31).  Paper ID: 219.

  5. Qing W, Li A, Yu F, et al. On the Application of the Wave Finite Element Method for Computing the Wave-mode Power Flow Network of an Electric Motor Housing. The 16th Asia Conference on Mechanical and Aerospace Engineering (ACMAE16). Paper ID: M092.

授权专利:

1.一种基于单点激光扫描的全场振动测试方法和系统. 2025

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