Thermal Energy Storage Model Development

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INL/EXT‐18-45505, Revision 0, Idaho National Laboratory. [4] Konor L. Frick. August 2019. “Status Report on the NuScale Module Development in the Modelica Framework.” INL/EXT-19-55520, Idaho National Laboratory. [5] Dassault Systems. DYMOLA Systems Engineering [Internet]. [updated 2020 May 28; cited 2018 May 16]. Available: https://www.3ds.com/products-services/catia/products/dymola/. [6] Modelica Association. “Modelica Standard Library.” Updated 2018 May 22; cited 2018 May 16. Available: https://github.com/modelica/Modelica. [7] M.S. Greenwood: TRANSFORM - TRANsient Simulation Framework of Reconfigurable Models. Computer Software. https://github.com/ORNL-Modelica/TRANSFORM-Library. 07 Nov. 2017. Web. Oak Ridge National Laboratory. doi:10.11578/dc.20171109.1. Available: https://github.com/ORNL-Modelica/TRANSFORM-Library. [8] N. Hoivik, C. Greiner, E. Tirado, J. Barragan, P. Bergan, G. Skele, P. Blanco, and N. Calvet. 2017. “Demonstration of EnergyNest thermal energy storage (TES) technology.” AIP Conference Proceedings 1850, 080011. https://doi.org/10.1063/1.4984432. [9] S. Kandlikar. February 1990. “A general correlation for saturated two-phase flow boiling heat transfer inside horizontal and vertical tubes.” Journal of Heat Transfer 112 (1): 219–228. https://doi.org/10.1115/1.2910348. [10] B. Hardik and S. Prabhu. December 2016. “Boiling pressure drop and local heat transfer distribution of water in horizontal straight tubes at low pressure.” International Journal of Thermal Sciences, 110:65–82. https://doi.org/10.1016/j.ijthermalsci.2016.06.025. [11] Bright Energy. n.d. “Transforming Power.” Accessed March 8, 2021. https://www.brightes.com. [12] B. Capp. “Transforming nuclear generation plants with thermal energy storage.” June 17, 2019. [13] K. Pykkonen. July 2019. “Concrete Thermal Energy Storage and Pumped Heat Variant” (PowerPoint presentation). https://art.inl.gov/Meetings/Heat%20Storage%20for%20Gen%20IV%20Reactors%20Workshop%20J uly%2023-24/Presentations/08_Pykkonen_Bright_Energy_TES_for_Nuclear.pdf [14] EnergyNest, The Thermal Battery company. n.d. “Frequently Asked Questions.” Accessed March 8, 2021. https://energy-nest.com/faq/ [15] Paul Talbot et al. “HERON.” Accessed March 29, 2021. https://github.com/idaholab/HERON/wiki [16] Amey Shigrekar. November 2020. “Modeling and Experimental Validation of Latent Heat Thermal Energy Storage System.” Ph.D. dissertation, University of Idaho. [17] J. T. Van Lew, P. Li, C. L. Chan, W. Karaki, J. Stephens. May 2011. “Analysis of Heat Storage and Delivery of a Thermocline Tank Having Solid Filler Material.” ASME. Journal of Solar Energy Engineering. 133(2): 021003. https://doi.org/10.1115/1.4003685. [18] Thibaut Esence, Arnaud Bruch, Sophie Molina, Benoit Stutz, Jean-François Fourmigué. September 2017. “A review on experience feedback and numerical modeling of packed-bed thermal energy storage systems.” Solar Energy. Vol. 153: 628–654. https://doi.org/10.1016/j.solener.2017.03.032. [19] “Therminol 66: High Performance Highly Stable Heat Transfer Fluid.” Applied Chemistry, Creative Solutions, Solutia, Inc., St. Louis, Missouri; https://www.therminol.com/product/71093438. [20] M. Munro. 1997. “Evaluated Material Properties for a Sintered α-Alumina.” Journal of American Ceramics. Volume 80: 1919–1928. https://doi.org/10.1111/j.1151-2916.1997.tb03074.x. [21] F. Klasing, C. Odenthal, B. Trost, T. Hirsch, T. Bauer. November 2018. “Techno-economic assessment for large scale thermocline filler TES systems in a molten salt parabolic trough plant.” AIP Conference Proceedings, 2033(1): 090017. https://doi.org/10.1063/1.5067111. 30

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