|
| 1 | +% libMesh |
| 2 | +% "We note, the discretization of the minimization problem is performed using the |
| 3 | +% finite element framework libMesh ..." |
| 4 | +% http://www.ddm.org/DD26/proceedings/343.pdf |
| 5 | +% https://link.springer.com/book/9783030950248 |
| 6 | +@InCollection{Kothari_2023, |
| 7 | + author = {Hardik Kothari and Alena Kopani{\v{c}}{\'{a}}kov{\'{a}} and Rolf Krause}, |
| 8 | + title = {{A multigrid preconditioner for Jacobian-free Newton--Krylov methods}}, |
| 9 | + pages = {365--372}, |
| 10 | + year = 2023, |
| 11 | + publisher = {Springer, Cham}, |
| 12 | + booktitle = {Domain Decomposition Methods in Science and Engineering XXVI}, |
| 13 | + volume = 145, |
| 14 | + series = {Lecture Notes in Computational Science and Engineering}, |
| 15 | + editor = {Susanne C. Brenner and Eric Tsz Shun Chung and Axel Klawonn and Felix Kwok and Jinchao Xu and Jun Zou}, |
| 16 | + 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}} |
| 17 | +} |
| 18 | + |
| 19 | +% MOOSE |
| 20 | +% "We choose an open-source FE framework (MOOSE...) to instantiate and solve the numerical model." |
| 21 | +% https://www.proquest.com/openview/96ca48c9a647b886b0a6877fb7a23a12 |
| 22 | +@phdthesis{Kim_thesis, |
| 23 | + author = {Hokon Kim}, |
| 24 | + school = {Carnegie Mellon University}, |
| 25 | + title = {Simulations of activity and degradation in solid oxide fuel cells as a function of electrode microstructures}, |
| 26 | + note = {\url{https://tinyurl.com/24hxmcjv}}, |
| 27 | + month = may, |
| 28 | + year = 2023 |
| 29 | +} |
| 30 | + |
| 31 | +% MOOSE/Pronghorn |
| 32 | +@Article{Kyriakopoulos_2023, |
| 33 | + author = {Vasileios Kyriakopoulos and Mauricio E. Tano and Aydin Karahan}, |
| 34 | + title = {{Demonstration of Pronghorn's subchannel code modeling of liquid-metal reactors and validation in normal operation conditions and blockage scenarios}}, |
| 35 | + journal = {Energies}, |
| 36 | + month = mar, |
| 37 | + year = 2023, |
| 38 | + volume = 16, |
| 39 | + number = 6, |
| 40 | + pages = {2592 (31 pages)}, |
| 41 | + note = {\url{https://doi.org/10.3390/en16062592}} |
| 42 | +} |
| 43 | + |
| 44 | +% MOOSE |
| 45 | +% This is a "Mini Review" article. It does not use MOOSE, but MOOSE is mentioned prominently as a key enabler of the SMR market. |
| 46 | +@Article{STan_2023, |
| 47 | + author = {Shaojie Tan and Songbai Cheng and Kai Wang and Xiaoxing Liu and Hui Cheng and Jun Wang}, |
| 48 | + title = {The development of micro and small modular reactor in the future energy market}, |
| 49 | + journal = {Frontiers in Energy Research}, |
| 50 | + month = mar, |
| 51 | + year = 2023, |
| 52 | + volume = 11, |
| 53 | + pages = {10 (9 pages)}, |
| 54 | + note = {Special Issue: Horizons in Energy Research 2022, \url{https://doi.org/10.3389/fenrg.2023.1149127}} |
| 55 | +} |
| 56 | + |
| 57 | +% MOOSE |
| 58 | +% "The numerical simulations for coupled fluid flow and heat transfer processes are carried out with ... TIGER ... which is based on ... MOOSE" |
| 59 | +@Article{GYan_2023, |
| 60 | + author = {G. Yan and B. Busch and R. Egert and M. Esmaeilpour and K. Stricker and T. Kohl}, |
| 61 | + title = {Transport mechanisms of hydrothermal convection in faulted tight sandstones}, |
| 62 | + journal = {Solid Earth}, |
| 63 | + month = mar, |
| 64 | + year = 2023, |
| 65 | + volume = 14, |
| 66 | + number = 3, |
| 67 | + pages = {293--310}, |
| 68 | + note = {\url{https://doi.org/10.5194/se-14-293-2023}, EGUsphere Preprint: \url{https://doi.org/10.5194/egusphere-2022-1185}} |
| 69 | +} |
| 70 | + |
| 71 | +% MOOSE |
| 72 | +% "... the coupled set of discretized equations is implemented into ... (MOOSE)" |
| 73 | +% author:singh author:li microstructure chemomechanics polycrystalline cathodes |
| 74 | +@Misc{Singh_2023, |
| 75 | + author = {Avtar Singh and Wei Li and Trevor Martin and Donal Finegan and Juner Zhu }, |
| 76 | + title = {Microstructure-chemomechanics relations of polycrystalline cathodes in solid-state batteries}, |
| 77 | + month = mar, |
| 78 | + year = 2023, |
| 79 | + howpublished = {SSRN preprint}, |
| 80 | + note = {\url{https://doi.org/10.2139/ssrn.4375417}} |
| 81 | +} |
| 82 | + |
| 83 | +% MOOSE |
| 84 | +% "In this study, the ... microreactor was investigated by multiphysics simulations ... based on the MOOSE MultiApps system." |
| 85 | +@Article{Miao_2023, |
| 86 | + author = {Yinbin Miao and Kun Mo and Tingzhou Fei and Yan Cao}, |
| 87 | + title = {Multiphysics simulations of self-regulating performance of an optimized molten metal fuel microreactor design}, |
| 88 | + journal = {Nuclear Engineering and Design}, |
| 89 | + month = may, |
| 90 | + year = 2023, |
| 91 | + volume = 406, |
| 92 | + pages = {112244 (xx pages)}, |
| 93 | + note = {\url{https://doi.org/10.1016/j.nucengdes.2023.112244}} |
| 94 | +} |
| 95 | + |
1 | 96 | % MOOSE |
2 | 97 | % https://doi.org/10.13140/RG.2.2.28908.85123 |
3 | 98 | @Article{Slaughter_2023, |
|
0 commit comments