@misc{10498/35641, year = {2024}, month = {8}, url = {http://hdl.handle.net/10498/35641}, abstract = {The prevalent numerical models for simulating axially finned heat exchangers with phase change materials (PCMs) and water asthe heat transfer fluid rely on computational fluid dynamics (CFD) techniques, with a primary focus on phase change modeling.However, the computational demands of these models, incorporating phase change effects and resolving PCM movement in theliquid state, are substantial. From experiments suggesting that conduction in the solidified PCM around the finned tube domi-nates heat transfer during the heat discharge process, this article introduces a simplified CFD-based model in which convectiveflow of the PCM is neglected. The model is experimentally validated using a 1-m-long axially finned heat exchanger prototypewith four fins, recording temperatures under different water flow rates and orientations (horizontal and vertical). Results showthat the proposed model predicts outlet water temperature satisfactorily, with absolute errors below 1.0°C and 2.2°C for the hori-zontal and vertical orientations, respectively. Additionally, the model can capture the temperature trend inside the PCM for thehorizontal orientation.}, publisher = {Wiley}, keywords = {computational fluid dynamics model}, keywords = {experimental validation}, keywords = {longitudinally finned heat exchangers}, keywords = {phase change materia}, title = {Performance of a Simplified Computational Fluid Dynamics Model for a Phase Change Material-Water Finned Heat Exchanger Under Different Orientations}, doi = {10.1002/est2.70021}, author = {González Gallero, Francisco Javier and González Siles, Gabriel and Rodríguez Maestre, Ismael and Foncubierta Blázquez, Juan Luis and Pérez-Lombard, Luis}, }