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Merge remote-tracking branch 'jwpeterson/citations' into devel
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doc/citations/maybe.bib

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% that they actually use libMesh, and we can't check because they are
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% behind a paywall/not on sci-hub.
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% Maybe MOOSE
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% Requested full-text on ResearchGate
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@Article{Pivovar_2023,
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author = {Ross Pivovar and Rebecca Owston},
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title = {{Mixcoatl Software (Part 1): Coupled thermal physics and mechanics for efficient engineering design}},
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journal = {Nuclear Science and Engineering},
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month = apr,
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year = 2023,
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volume = 197,
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number = 4,
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pages = {676--685},
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note = {\url{https://doi.org/10.1080/00295639.2022.2154114}}
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}
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% Maybe MOOSE
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% Requested full-text for Part 1 on ResearchGate
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@Article{Pivovar_2023b,
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author = {Ross Pivovar and Rebecca Owston},
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title = {{Mixcoatl software (Part 2): Verification of 1D fluid flow methods coupled to 3D FEM thermal diffusion models}},
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journal = {Nuclear Science and Engineering},
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month = apr,
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year = 2023,
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volume = 197,
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number = 4,
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pages = {686--702},
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note = {\url{https://doi.org/10.1080/00295639.2022.2126718}}
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}
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% Maybe MOOSE
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% https://www.proquest.com/openview/0cfd22aca158ae8d70b31e5fda7c7c2c/1
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@phdthesis{XWang_thesis,
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% Maybe MOOSE
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% It is not explicitly stated that the implementation is based on
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% MOOSE, although MOOSE is cited. Need to ask the authors for more information.
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% author:tsolaki author:corso multiscale multimodal
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@Misc{Tsolaki_2023,
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author = {Elena Tsolaki and Pascal Corso and Robert Zboray and Jonathan Avaro and Christian Appel and Marianne Liebi and Sergio Bertazzo and Paul Philipp Heinisch and Thierry Carrel and Dominik Obrist and Inge K. Herrmann },
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title = {Multiscale multimodal characterization and simulation of structural alterations in failed bioprosthetic heart valves},

doc/citations/preprints.bib

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% Preprints
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% libMesh
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% "Our multiphysics simulation workflow is built on top of libMesh..."
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@Article{Barros_2023,
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author = {Gabriel F. Barros and Mal{\'{u}} Grave and Jos{\'{e}} J. Camata and Alvaro L. G. A. Coutinho},
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title = {Enhancing dynamic mode decomposition workflow with in-situ visualization and data compression},
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journal = {Engineering with Computers},
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month = mar,
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year = 2023,
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pages = {xx (22 pages)},
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note = {\url{https://doi.org/10.1007/s00366-023-01805-y}, ArXiv e-print: \url{https://arxiv.org/abs/2208.07767}}
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}
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% Maybe MOOSE
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% Cites the INS paper but not the MOOSE paper.
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@Article{Patel_2023,
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author = {Tejas Patel and Chris Li and Farshad Raissi and Ghassan S. Kassab and Tong Gao and Lik Chuan Lee},
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title = {Coupled thermal-hemodynamics computational modeling of cryoballoon ablation for pulmonary vein isolation},
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journal = {Computers in Biology and Medicine},
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month = mar,
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year = 2023,
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pages = {106766 (xx pages)},
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note = {\url{https://doi.org/10.1016/j.compbiomed.2023.106766}}
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}
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% Maybe MOOSE
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@Article{Dhole_2023,
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author = {Ashish Dhole and Anirban Patra and Rohit Kumar Gupta and Amol Gokhale and Indradev Samajdar},
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title = {{Surface hardening through oxygen diffusion in niobium: The defining role of stress inhomogeneity in tensile embrittlement}},
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journal = {Materials Science and Engineering: A},
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month = mar,
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year = 2023,
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pages = {144883 (xx pages)},
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note = {\url{https://doi.org/10.1016/j.msea.2023.144883}}
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}
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% MOOSE
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% "The proposed mathematical model is implemented into ... (MOOSE)"
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@Article{Cao_2023,
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note = {\url{https://doi.org/10.1080/00295639.2022.2142440}}
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}
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% Maybe MOOSE
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@Article{Pivovar_2023,
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author = {Ross Pivovar and Rebecca Owston},
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title = {{Mixcoatl Software (Part 1): Coupled thermal physics and mechanics for efficient engineering design}},
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journal = {Nuclear Science and Engineering},
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month = jan,
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year = 2023,
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pages = {xx (10 pages)},
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note = {\url{https://doi.org/10.1080/00295639.2022.2154114}}
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}
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% Maybe MOOSE
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@Article{Pivovar_2023b,
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author = {Ross Pivovar and Rebecca Owston},
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title = {{Mixcoatl software (Part 2): Verification of 1D fluid flow methods coupled to 3D FEM thermal diffusion models}},
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journal = {Nuclear Science and Engineering},
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month = nov,
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year = 2022,
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pages = {xx (17 pages)},
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note = {\url{https://doi.org/10.1080/00295639.2022.2126718}}
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}
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% MOOSE
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% "We investigate two examples, datasets of which were generated by solving the underlying PDEs using the finite element (FE) framework MOOSE"
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@Article{Kopanicakova_2021,
@@ -153,20 +166,3 @@ @Article{Ooi_2022
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pages = {xx (28 pages)},
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note = {\url{https://doi.org/10.1080/00295639.2022.2106726}}
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}
156-
157-
% libMesh
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% "We note, the discretization of the minimization problem is performed using the
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% finite element framework libMesh ..."
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% Note: title changed from "A matrix-free multigrid preconditioner for Jacobian-free Newton--Krylov methods"
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% Lecture Notes in Computational Science and Engineering (LNCSE, volume 145)
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% http://www.ddm.org/DD26/proceedings/343.pdf
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@InProceedings{Kothari_2022,
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author = {Hardik Kothari and Alena Kopani{\v{c}}{\'{a}}kov{\'{a}} and Rolf Krause},
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title = {{A multigrid preconditioner for Jacobian-free Newton--Krylov methods}},
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booktitle = {{Proceedings of the 26th International Conference on Domain Decomposition Methods}},
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address = {Hong Kong, China},
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editor = {Susanne C. Brenner and Eric Tsz Shun Chung and Axel Klawonn and Felix Kwok and Jinchao Xu and Jun Zou},
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month = aug,
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year = 2022,
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note = {\url{https://link.springer.com/book/9783030950248}, ArXiv e-print: \url{https://arxiv.org/abs/2103.13890}}
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}

doc/citations/twenty.bib

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% MOOSE
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% "All numerical tests have been implemented in "Parrot" ... in the FE framework MOOSE"
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% Same paper with slightly different title from 2022: https://doi.org/10.2139/ssrn.4166563
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% author:nestola author:favino discrete maximum principle
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@Misc{Nestola_2020,
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author = {Maria Giuseppina Chiara Nestola and Marco Favino},

doc/citations/twentythree.bib

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% libMesh
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% "We note, the discretization of the minimization problem is performed using the
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% finite element framework libMesh ..."
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% http://www.ddm.org/DD26/proceedings/343.pdf
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% https://link.springer.com/book/9783030950248
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@InCollection{Kothari_2023,
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author = {Hardik Kothari and Alena Kopani{\v{c}}{\'{a}}kov{\'{a}} and Rolf Krause},
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title = {{A multigrid preconditioner for Jacobian-free Newton--Krylov methods}},
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pages = {365--372},
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year = 2023,
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publisher = {Springer, Cham},
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booktitle = {Domain Decomposition Methods in Science and Engineering XXVI},
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volume = 145,
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series = {Lecture Notes in Computational Science and Engineering},
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editor = {Susanne C. Brenner and Eric Tsz Shun Chung and Axel Klawonn and Felix Kwok and Jinchao Xu and Jun Zou},
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note = {\url{https://doi.org/10.1007/978-3-030-95025-5_38}, from the 26th International Conference on Domain Decomposition Methods, Hong Kong, China, (Aug 2022), ArXiv e-print: \url{https://arxiv.org/abs/2103.13890}}
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}
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% MOOSE
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% "We choose an open-source FE framework (MOOSE...) to instantiate and solve the numerical model."
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% https://www.proquest.com/openview/96ca48c9a647b886b0a6877fb7a23a12
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@phdthesis{Kim_thesis,
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author = {Hokon Kim},
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school = {Carnegie Mellon University},
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title = {Simulations of activity and degradation in solid oxide fuel cells as a function of electrode microstructures},
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note = {\url{https://tinyurl.com/24hxmcjv}},
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month = may,
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year = 2023
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}
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% MOOSE/Pronghorn
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@Article{Kyriakopoulos_2023,
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author = {Vasileios Kyriakopoulos and Mauricio E. Tano and Aydin Karahan},
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title = {{Demonstration of Pronghorn's subchannel code modeling of liquid-metal reactors and validation in normal operation conditions and blockage scenarios}},
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journal = {Energies},
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month = mar,
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year = 2023,
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volume = 16,
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number = 6,
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pages = {2592 (31 pages)},
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note = {\url{https://doi.org/10.3390/en16062592}}
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}
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% MOOSE
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% This is a "Mini Review" article. It does not use MOOSE, but MOOSE is mentioned prominently as a key enabler of the SMR market.
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@Article{STan_2023,
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author = {Shaojie Tan and Songbai Cheng and Kai Wang and Xiaoxing Liu and Hui Cheng and Jun Wang},
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title = {The development of micro and small modular reactor in the future energy market},
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journal = {Frontiers in Energy Research},
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month = mar,
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year = 2023,
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volume = 11,
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pages = {10 (9 pages)},
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note = {Special Issue: Horizons in Energy Research 2022, \url{https://doi.org/10.3389/fenrg.2023.1149127}}
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}
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% MOOSE
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% "The numerical simulations for coupled fluid flow and heat transfer processes are carried out with ... TIGER ... which is based on ... MOOSE"
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@Article{GYan_2023,
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author = {G. Yan and B. Busch and R. Egert and M. Esmaeilpour and K. Stricker and T. Kohl},
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title = {Transport mechanisms of hydrothermal convection in faulted tight sandstones},
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journal = {Solid Earth},
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month = mar,
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year = 2023,
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volume = 14,
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number = 3,
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pages = {293--310},
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note = {\url{https://doi.org/10.5194/se-14-293-2023}, EGUsphere Preprint: \url{https://doi.org/10.5194/egusphere-2022-1185}}
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}
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% MOOSE
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% "... the coupled set of discretized equations is implemented into ... (MOOSE)"
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% author:singh author:li microstructure chemomechanics polycrystalline cathodes
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@Misc{Singh_2023,
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author = {Avtar Singh and Wei Li and Trevor Martin and Donal Finegan and Juner Zhu },
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title = {Microstructure-chemomechanics relations of polycrystalline cathodes in solid-state batteries},
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month = mar,
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year = 2023,
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howpublished = {SSRN preprint},
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note = {\url{https://doi.org/10.2139/ssrn.4375417}}
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}
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% MOOSE
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% "In this study, the ... microreactor was investigated by multiphysics simulations ... based on the MOOSE MultiApps system."
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@Article{Miao_2023,
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author = {Yinbin Miao and Kun Mo and Tingzhou Fei and Yan Cao},
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title = {Multiphysics simulations of self-regulating performance of an optimized molten metal fuel microreactor design},
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journal = {Nuclear Engineering and Design},
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month = may,
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year = 2023,
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volume = 406,
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pages = {112244 (xx pages)},
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note = {\url{https://doi.org/10.1016/j.nucengdes.2023.112244}}
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}
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% MOOSE
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% https://doi.org/10.13140/RG.2.2.28908.85123
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@Article{Slaughter_2023,

doc/citations/twentytwo.bib

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note = {\url{https://arxiv.org/abs/2210.07541}}
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}
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% MOOSE
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% "The numerical simulations for coupled fluid flow and heat transfer processes are carried out with ... TIGER ... which is based on ... MOOSE"
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% author:Yan author:Busch transport mechanisms faulted sandstones
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@Misc{GYan_2022,
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author = {G. Yan and B. Busch and R. Egert and M. Esmaeilpour and K. Stricker and T. Kohl},
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title = {Transport mechanisms of hydrothermal convection in faulted tight sandstones},
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month = nov,
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year = 2022,
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howpublished = {EGUsphere Preprint},
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note = {\url{https://doi.org/10.5194/egusphere-2022-1185}}
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}
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% MOOSE/SAM
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% https://publications.anl.gov/anlpubs/2022/11/179789.pdf
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@TechReport{LZou_2022b,
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note = {\url{https://doi.org/10.1016/j.scriptamat.2022.114537}, SSRN preprint: \url{https://doi.org/10.2139/ssrn.3990705}}
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}
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% libMesh
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% "Our multiphysics simulation workflow is built on top of libMesh..."
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% author:barros author:grave enhancing dynamic mode
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@Misc{Barros_2022,
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author = {Gabriel F. Barros and Mal{\'{u}} Grave and Jos{\'{e}} J. Camata and Alvaro L. G. A. Coutinho},
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title = {Enhancing dynamic mode decomposition workflow with in-situ visualization and data compression},
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month = aug,
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year = 2022,
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howpublished = {ArXiv e-print},
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note = {\url{https://arxiv.org/abs/2208.07767}}
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}
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% BISON
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@Article{Paaren_2022,
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author = {Kyle M. Paaren and Ammon Black and Nancy Lybeck and Kun Mo and Benjamin W. Spencer and Pavel Medvedev and Douglas Porter},

doc/statistics/github_traffic_plotclones.csv

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doc/statistics/github_traffic_plotviews.csv

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2023-Mar-14,133,31
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