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Wensi Wu
Wensi Wu
Research Associate Scientist, Children's Hospital of Philadelphia
Verified email at chop.edu
Title
Cited by
Cited by
Year
Effective data sampling strategies and boundary condition constraints of physics-informed neural networks for identifying material properties in solid mechanics
W Wu, M Daneker, MA Jolley, KT Turner, L Lu
Applied mathematics and mechanics 44 (7), 1039-1068, 2023
162023
Interface reduction on hurty/craig-bampton substructures with frictionless contact
PJ Hughes, W Scott, W Wu, RJ Kuether, MS Allen, P Tiso
Nonlinear Dynamics, Volume 1: Proceedings of the 36th IMAC, A Conference and …, 2019
132019
A computational framework for atrioventricular valve modeling using open-source software
W Wu, S Ching, SA Maas, A Lasso, P Sabin, JA Weiss, MA Jolley
Journal of biomechanical engineering 144 (10), 101012, 2022
102022
A principled approach to design using high fidelity fluid-structure interaction simulations
W Wu, C Bonneville, C Earls
Finite Elements in Analysis and Design 194, 103562, 2021
82021
A new engineering theory describing oblique free surface impact by flexible plates
W Wu, C Earls
Ocean Engineering 256, 111473, 2022
42022
The effects of leaflet material properties on the simulated function of regurgitant mitral valves
W Wu, S Ching, P Sabin, DW Laurence, SA Maas, A Lasso, JA Weiss, ...
Journal of the Mechanical Behavior of Biomedical Materials 142, 105858, 2023
22023
CU-BENs: A structural modeling finite element library
W Wu, J Kosianka, H Reed, C Stull, C Earls
SoftwareX 11, 100485, 2020
22020
Interface Reduction on Hurty/Craig-Bampton Substructures with Mechanical Joints.
P Hughes, WE Scott, W Wu
Sandia National Lab.(SNL-NM), Albuquerque, NM (United States), 2017
12017
Identifying heterogeneous micromechanical properties of biological tissues via physics-informed neural networks
W Wu, M Daneker, KT Turner, MA Jolley, L Lu
arXiv preprint arXiv:2402.10741, 2024
2024
Physics in the Loop: Integrating Biomechanics-Derived Training Data into a Neural Ordinary Differential Equation-Based Deformable Registration Framework
W Wu, Y Wu, AM Sulentic, J Gee, AM Pouch, MA Jolley
Medical Imaging with Deep Learning, 2024
2024
Theoretical Formulation for Oblique Free Surface Impact Emanating from Fluid-Structure Interaction Simulations
W Wu
Cornell University, 2021
2021
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Articles 1–11