A physics-enhanced neural network approach for packed bed latent heat storage systems incorporating hysteresis and subcooling
E. Hassan Nezhad, M. Grabo, J. Kirschbaum, J. Riese, in: 2026.
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Hassan Nezhad E, Grabo M, Kirschbaum J, Riese J. A physics-enhanced neural network approach for packed bed latent heat storage systems incorporating hysteresis and subcooling. In: ; 2026. doi:SDEWES2026.0119
Hassan Nezhad, E., Grabo, M., Kirschbaum, J., & Riese, J. (2026). A physics-enhanced neural network approach for packed bed latent heat storage systems incorporating hysteresis and subcooling. https://doi.org/SDEWES2026.0119
@inproceedings{Hassan Nezhad_Grabo_Kirschbaum_Riese_2026, title={A physics-enhanced neural network approach for packed bed latent heat storage systems incorporating hysteresis and subcooling}, DOI={SDEWES2026.0119}, author={Hassan Nezhad, Elham and Grabo, Matti and Kirschbaum, Julia and Riese, Julia}, year={2026} }
Hassan Nezhad, Elham, Matti Grabo, Julia Kirschbaum, and Julia Riese. “A Physics-Enhanced Neural Network Approach for Packed Bed Latent Heat Storage Systems Incorporating Hysteresis and Subcooling,” 2026. https://doi.org/SDEWES2026.0119.
E. Hassan Nezhad, M. Grabo, J. Kirschbaum, and J. Riese, “A physics-enhanced neural network approach for packed bed latent heat storage systems incorporating hysteresis and subcooling,” 2026, doi: SDEWES2026.0119.
Hassan Nezhad, Elham, et al. A Physics-Enhanced Neural Network Approach for Packed Bed Latent Heat Storage Systems Incorporating Hysteresis and Subcooling. 2026, doi:SDEWES2026.0119.