|
| 1 | +% MOOSE |
| 2 | +% "The majority of the applications deployed to perform this analysis are developed under the ... (MOOSE) framework" |
| 3 | +% https://www.osti.gov/biblio/1983953 |
| 4 | +@TechReport{Ortensi_2023, |
| 5 | + author = {Javier Ortensi and Cole Mueller and Stefano Terlizzi and Guillaume Louis Giudicelli and Sebastian Schunert}, |
| 6 | + title = {Fluoride-cooled high-temperature pebble-bed reactor reference plant model}, |
| 7 | + institution = {Idaho National Laboratory}, |
| 8 | + day = may, |
| 9 | + month = 31, |
| 10 | + year = 2023, |
| 11 | + number = {INL/RPT-23-72727}, |
| 12 | + note = {\url{https://doi.org/10.2172/1983953}} |
| 13 | +} |
| 14 | + |
| 15 | +% MOOSE |
| 16 | +% "In this work, a multiphysics reference plant model of the HTR-PM was developed based on ... (MOOSE)" |
| 17 | +% https://www.osti.gov/biblio/1984239 |
| 18 | +@TechReport{Jaradat_2023, |
| 19 | + author = {Mustafa Kamel {Mohammad Jaradat} and Sebastian Schunert and Javier Ortensi}, |
| 20 | + title = {Gas-cooled high-temperature pebble-bed reactor reference plant model}, |
| 21 | + institution = {Idaho National Laboratory}, |
| 22 | + day = 30, |
| 23 | + month = apr, |
| 24 | + year = 2023, |
| 25 | + number = {INL/RPT-23-72192}, |
| 26 | + note = {\url{https://doi.org/10.2172/1984239}} |
| 27 | +} |
| 28 | + |
| 29 | +% MOOSE/MOSKITO |
| 30 | +% "MOSKITO is a powerful and user-friendly wellbore simulator developed ... on the MOOSE Framework" |
| 31 | +% https://doi.org/10.5445/IR/1000159240 |
| 32 | +% DOI was not active when I initially tried it |
| 33 | +% https://www.researchgate.net/publication/371608119_Numerical_Simulation_of_non-isothermal_Complex_Fluid_Mixtures_in_Deep_Geothermal_Systems |
| 34 | +@phdthesis{Esmaeilpour_thesis, |
| 35 | + author = {Morteza Esmaeilpour}, |
| 36 | + school = {Karlsruhe Institute of Technology}, |
| 37 | + title = {Numerical simulation of non-isothermal complex fluid mixtures in deep geothermal systems}, |
| 38 | + note = {\url{https://tinyurl.com/35r8yhfu}}, |
| 39 | + month = may, |
| 40 | + year = 2023 |
| 41 | +} |
| 42 | + |
1 | 43 | % MOOSE
|
2 | 44 | % https://www.researchgate.net/publication/371340588_Hybrid_Temperature-Reactivity_PID_Controllers_for_Nuclear_Thermal_Propulsion_Startup
|
3 | 45 | % https://www.ans.org/meetings/nets2023/session/view-1640/#paper_4722
|
@@ -1043,18 +1085,6 @@ @Article{Chatterjee_2023
|
1043 | 1085 | note = {\url{https://doi.org/10.1016/j.commatsci.2022.111969}, ArXiv e-print: \url{https://arxiv.org/abs/2301.01747}}
|
1044 | 1086 | }
|
1045 | 1087 |
|
1046 |
| -% MOOSE |
1047 |
| -% "The implementation of the BVP is carried out in MOOSE..." |
1048 |
| -% author:pachaury author:warren plasticity irradiated nanopillars |
1049 |
| -@Misc{Pachaury_2023, |
1050 |
| - author = {Yash Pachaury and George Warren and Janelle P. Wharry and Giacomo Po and Anter El-Azab}, |
1051 |
| - title = {{Plasticity in irradiated FeCrAl nanopillars investigated using discrete dislocation dynamics}}, |
1052 |
| - month = jan, |
1053 |
| - year = 2023, |
1054 |
| - howpublished = {ArXiv e-print}, |
1055 |
| - note = {\url{https://arxiv.org/abs/2301.01812}} |
1056 |
| -} |
1057 |
| - |
1058 | 1088 | % MOOSE/Pronghorn
|
1059 | 1089 | % "Idaho National Laboratory's Pronghorn code was used as the intermediate-fidelity code for this work."
|
1060 | 1090 | @Article{Reger_2023,
|
|
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