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Toward High Thermal-Hydraulic Performance of Heat Exchangers for Water-Gravel Thermal Energy Storage

  • Planungsgruppe M+M AG

Research output: Chapter in Book or Conference ProceedingsConference Proceedings without Presentationpeer-review

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Abstract

Water-gravel thermal energy storage (WGTES) offers a cost-effective and environmentally sustainable solution for large-scale seasonal thermal energy storage, with performance strongly dependent on the layout and operation
of charging and discharging heat exchangers. This study presents a simulation-driven methodology for optimizing heat exchanger design in a WGTES with three neighboring storage units at the incampus demo site of the
INTERSTORES project.
A detailed COMSOL Multiphysics® model is developed to capture both thermal and hydraulic interactions between the heat exchangers and the porous gravel matrix. Parametric analyses investigate different heat exchanger configurations. Performance is assessed via a thermal-to-hydraulic ratio. Results show that layout, multi-level configurations and operating conditions significantly affect thermal performance, hydraulic losses and overall efficiency.
This work demonstrates the value of multiphysics modeling for performance-optimized WGTES design and provides a transferable framework for large-scale seasonal storage planning.
Original languageEnglish
Title of host publicationProceedings of COMSOL 2025 Conference - Amsterdam
Number of pages7
Publication statusPublished - 5 Nov 2025
EventCOMSOL 2025 Conference - Amsterdam - Meervat Theater, Amsterdam, Netherlands
Duration: 29 Oct 202531 Oct 2025
https://www.comsol.com/paper/download/1612671/INTERSTORES_COMSOL%202025_Varanto%20CTES_final.pdf

Conference

ConferenceCOMSOL 2025 Conference - Amsterdam
Country/TerritoryNetherlands
CityAmsterdam
Period29/10/2531/10/25
Internet address

Research Field

  • Large Energy Supply Infrastructure

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