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Add conference for hybrid method
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_bibliography/references.bib

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@inproceedings{park_hybrid_2025,
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address = {Denver, CO},
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title = {A {Hybrid} {SN}-{Diffusion} {Method} for {Molten} {Salt} {Reactor} {Control} {Rod} {Modeling}},
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url = {https://www.ans.org/pubs/proceedings/article-58077/},
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doi = {doi.org/10.13182/MC25-47048},
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booktitle = {Proceedings of {The} {International} {Conference} on {Mathematics} and {Computational} {Methods} {Applied} to {Nuclear} {Science} and {Engineering} ({M}\&{C} 2025)},
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publisher = {American Nuclear Society},
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author = {Park, Sun Myung and Huff, Kathryn D and Munk, Madicken},
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month = apr,
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year = {2025},
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pages = {430--439},
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}
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@mastersthesis{yardas_implementation_2023,
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type = {Masters Thesis},
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title = {Implementation and validation of {OpenMC} depletion capabilities in {SaltProc}},

_data/presentations.yml

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- title: "A Hybrid SN-Diffusion Method for Molten Salt Reactor Control Rod Modeling"
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presenter: Sun Myung Park
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event: International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering (M&C 2025)
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type: Technical Presentation
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place: Denver, CO
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month: April
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day: 28
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year: 2025
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pic: '/img/pres/2025-mc.png'
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slides: '/pres/2025-park-mc.pdf'
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description: "This presentation presents a hybrid SN-diffusion method for
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accurate modeling of control rods in time-dependent molten salt reactor
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simulations. The hybrid method combines the strengths of both approaches by
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applying transport corrections generated using the SN method near control
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rods. 1-D simulation results show that the hybrid method provides improved
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rod worth estimates compared to pure diffusion models. The hybrid method
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iterative scheme demonstrates robustness in convergence and converges rapidly
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within two outer iterations."
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- title: "Useful practices in open-source software development for nuclear science and engineering"
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presenter: Oleksandr R. Yardas
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event: American Nuclear Society Student Conference

img/pres/2025-mc.png

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pres/2025-park-mc.pdf

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