Wen Jiang

Assistant Professor at North Carolina State University

Raleigh, North Carolina, United States
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Summary

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Wen Jiang is an assistant professor and computational scientist with 11 years of experience applying multi-physics modeling to mechanics and materials problems across meso- and continuum scales. Based at NC State with a joint appointment at Idaho National Laboratory, he contributes to production-grade nuclear simulation tools such as the BISON fuel code and the widely used open-source MOOSE framework, where he’s improved XFEM material-interface modeling and added regression tests for J-integral calculations. He leads development of MALAMUTE, a multi-scale additive manufacturing simulator, bridging research code and practical process simulation. Trained with a Ph.D. from Duke and M.S./B.E. from Beihang, Wen blends academic rigor with hands-on software engineering in high-assurance scientific codes. Notably, his work emphasizes test automation and moving-interface capabilities that enhance reliability of complex multiphysics simulations.
code11 years of coding experience
job7 years of employment as a software developer
bookDoctor of Philosophy (Ph.D.), Mechanical Engineering and Materials Science, Doctor of Philosophy (Ph.D.), Mechanical Engineering and Materials Science at Duke University
bookMaster of Science (M.S.), Solid Mechanics, Master of Science (M.S.), Solid Mechanics at Beijing University of Aeronautics and Astronautics
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Github Skills (9)

finite-element-analysis10
c-language10
el10
tensor10
f10
tensorflow10
cprogramming-language10
testing10
regression-testing9

Programming languages (7)

C++CSWIGTeXLessAssemblyPOV-Ray SDL

Github contributions (5)

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idaholab/moose

May 2015 - Nov 2022

Multiphysics Object Oriented Simulation Environment
Role in this project:
userBack-end Developer & Test Automation Engineer
Contributions:257 reviews, 141 commits, 123 PRs in 7 years 7 months
Contributions summary:Wen primarily contributed to the XFEM (eXtended Finite Element Method) module, focusing on code modifications and bug fixes within its codebase. They implemented improvements to the material interface modeling using XFEM and added features related to moving interfaces. They also performed test-related tasks, adding multiple regression tests for J-integral calculations and fixing existing tests to address issues and ensure reliability. The contributions suggest a focus on enhancing the accuracy and functionality of the XFEM module.
multiphysicssimulationfemfinite-elementsobject-oriented
jiangwen84/moose

Jun 2015 - Mar 2026

Multiphysics Object Oriented Simulation Environment
Contributions:2 PRs, 775 pushes, 192 branches in 10 years 10 months
pythonmultiphysicssimulationsimulation-environmentobject-oriented
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