MS-000 General Papers
Estimating elastic constants of orthotropic laminates using guided waves actuated and sensed from only one side of sample | |
Fangsen Cui, Faeez Masurkar, Saurabh Agarwal |
MS-001 Theory and Formulation for Novel Computational Methods
The 𝑪𝟑 parametric eighth-degree interpolation spline function | |
Xiaoyan Liu, Jin Xie, Lei Zhu, Yuqing Ma, Ke Zhang |
MS-011 Damage and Failure Modelling in Composite Materials
Computational modelling of repetitive rain drop impact and resulting fatigue damage in wind turbine blades | |
Puneet Mahajan, Nikesh Girdhari Kuthe |
MS-013 Large Scale Coupled Problems and Related Topics
Multistep prediction for dissolved gas analysis under imbalanced dataset | |
Hongjie Zheng, Ryuji Shioya, Yasushi Nakabayashi, Masato Masuda, Hiroshi Matoba, Keiichi Nakajima, Hideyuki Okakura, Hiroki Nakamura |
MS-015 Smoothed Finite Element Methods and Related Techniques
A sharp interface immersed edge-based smoothed finite element method with extended fictitious domain scheme for fluid-structure interaction | |
Gang Wang, Yin Hong, Chicheng Ma, Chengjiao Yu, Xu Han |
MS-026 Modeling and Simulation for Additive Manufacturing
Comparison of Metal Additive Manufacturing analysis using a large-scale finite element method and experimental data | |
Taku Murakami |
A robust thermoelastic topology optimization method considering both stress and manufacturing constraints | |
Gongteng Zhang, Jing Zheng, Bo Ma |
MS-033 Computational Biomechanics
Mechanical modeling of cell membrane including interactions between plasma membrane and actomyosin cortex | |
Kohsuke Tsukui, Hiromi Miyoshi, Naoya Sakamoto, Satoshi Ii |
Development of a novel numerical scheme for largely-moving boundary flow problems based on the mesh-constrained discrete point approach | |
Takeharu Matsuda, Satoshi Ii |
Development and application of a biophysical approach to study dynamic mechanical interaction between actin and cell nucleus | |
Chiharu Nakahara, Yugo Nagamine, Hiromi Miyoshi |
MS-039 Computational Particle Dynamics
High Fidelity Numerical Simulation of Selective Laser Melting based on GPU-accelerated SPH Method | |
Yibo Ma, Xu Zhou, Nianzhi Hang, Moubin Liu |
Total Lagrangian Material Point Method under high strain-rate deformation | |
Saurabh Singh, Harpreet Singh, Puneet Mahajan |