|
| 1 | +% IBAMR/libMesh |
| 2 | +% "The present paper simulates the problem using ... the ConstraintIB module ... implemented in IBAMR" |
| 3 | +% https://www.researchgate.net/publication/372488545_How_wavelength_affects_hydrodynamic_performance_of_two_accelerating_mirror-symmetric_undulating_hydrofoils |
| 4 | +% Possibly submitted to Physics of Fluids. The ArXiv preprint from Dec 2022 has only two authors. |
| 5 | +@Misc{ZLin_2023b, |
| 6 | + author = {Zhonglu Lin and Dongfang Liang and Amneet Pal Singh Balla and Ahmed A. Sheikh Al-Shabab and Martin Skote and Wei Zheng and Yu Zhang}, |
| 7 | + title = {How wavelength affects hydrodynamic performance of two accelerating mirror-symmetric undulating hydrofoils}, |
| 8 | + month = jul, |
| 9 | + year = 2023, |
| 10 | + howpublished = {ResearchGate Preprint}, |
| 11 | + note = {\url{https://tinyurl.com/2p984m84}, ArXiv e-print: \url{https://arxiv.org/abs/2212.11004}} |
| 12 | +} |
| 13 | + |
| 14 | +% MOOSE |
| 15 | +% "... the equations are non-dimensionalized and implemented using the open-source finite element framework MOOSE..." |
| 16 | +@Article{David_2023, |
| 17 | + author = {Rapha\"{e}lle David and Aashique A. Rezwan and Yongfeng Zhang}, |
| 18 | + title = {Impact of defect annihilation mechanism on the grain size dependence and the dimensionality effect of radiation induced segregation}, |
| 19 | + journal = {Materialia}, |
| 20 | + month = aug, |
| 21 | + year = 2023, |
| 22 | + volume = 30, |
| 23 | + pages = {101851 (xx pages)}, |
| 24 | + note = {\url{https://doi.org/10.1016/j.mtla.2023.101851}} |
| 25 | +} |
| 26 | + |
| 27 | +% MOOSE |
| 28 | +% "The PF equations were implemented in ... (MOOSE)" |
| 29 | +@Article{Rizza_2023b, |
| 30 | + author = {Giovanni Rizza and Manuela Galati and Luca Iuliano}, |
| 31 | + title = {{Evaluation of the effective thermal conductivity of the unmelted powder particles during the electron beam powder bed fusion (EB-PBF) process}}, |
| 32 | + journal = {Procedia CIRP}, |
| 33 | + month = jul, |
| 34 | + year = 2023, |
| 35 | + volume = 118, |
| 36 | + pages = {765--770}, |
| 37 | + note = {16th CIRP Conference on Intelligent Computation in Manufacturing Engineering, \url{https://doi.org/10.1016/j.procir.2023.06.131}} |
| 38 | +} |
| 39 | + |
| 40 | +% MOOSE |
| 41 | +% "Numerical implementation of the model is carried out ... in ... (MOOSE)" |
| 42 | +% https://www.researchgate.net/publication/369266382_A_thermodynamically_consistent_non-isothermal_phase-field_model_for_selective_laser_sintering_additive_manufacturing |
| 43 | +@Article{Liang_2023, |
| 44 | + author = {Chenguang Liang and Yan Yin and Wenxuan Wang and Min Yi}, |
| 45 | + title = {A thermodynamically consistent non-isothermal phase-field model for selective laser sintering}, |
| 46 | + journal = {International Journal of Mechanical Sciences}, |
| 47 | + month = dec, |
| 48 | + year = 2023, |
| 49 | + volume = 259, |
| 50 | + pages = {108602 (xx pages)}, |
| 51 | + note = {\url{https://doi.org/10.1016/j.ijmecsci.2023.108602}, ResearchGate Preprint: \url{https://tinyurl.com/39xaxmae}} |
| 52 | +} |
| 53 | + |
| 54 | +% MOOSE/Zapdos |
| 55 | +@Article{DeChant_2023b, |
| 56 | + author = {Corey DeChant and Casey Icenhour and Shane Keniley and Grayson Gall and Alexander Lindsay and Davide Curreli and Steven Shannon}, |
| 57 | + title = {{Verification and validation of the open-source plasma fluid code: Zapdos}}, |
| 58 | + journal = {Computer Physics Communications}, |
| 59 | + month = oct, |
| 60 | + year = 2023, |
| 61 | + volume = 291, |
| 62 | + pages = {108837 (xx pages)}, |
| 63 | + note = {\url{https://doi.org/10.1016/j.cpc.2023.108837}} |
| 64 | +} |
| 65 | + |
| 66 | +% MOOSE |
| 67 | +% "Cahn-Hilliard Equation ... was solved using finite element method in MOOSE framework ..." |
| 68 | +@Misc{Subedi_2023, |
| 69 | + author = {Upadesh Subedi and Nele Moleans and Tomasz Ta{\'{n}}ski and Anil Kunwar}, |
| 70 | + title = {{Foretelling microstructural interface with multi-generational convolutional-LSTM framework}}, |
| 71 | + month = jul, |
| 72 | + year = 2023, |
| 73 | + howpublished = {SSRN Preprint}, |
| 74 | + note = {\url{https://doi.org/10.2139/ssrn.4486852}} |
| 75 | +} |
| 76 | + |
1 | 77 | % MOOSE/KRAKEN |
2 | 78 | % "... we have developed our own multiphysics simulation platform, Kraken, built on top of ... (MOOSE) ..." |
3 | 79 | @Article{Wandke_2023b, |
@@ -606,7 +682,7 @@ @Article{Recuero_2023 |
606 | 682 | volume = 18, |
607 | 683 | number = 8, |
608 | 684 | pages = {081003 (8 pages)}, |
609 | | - note = {\url{https://doi.org/10.1115/1.4056589}} |
| 685 | + note = {\url{https://doi.org/10.1115/1.4056589}, Tech.~Report INL/CON-22-65883: \url{https://www.osti.gov/biblio/1988114}} |
610 | 686 | } |
611 | 687 |
|
612 | 688 | % MOOSE |
|
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