Projects per year
Abstract
The challenge of the temporal mismatch between energy supply and demand in buildings is growing with the increasing share of renewable energy in total energy consumption. Among all the state-of-the-art energy storage solutions, thermochemical heat storage shows a unique potential thanks to its considerable energy density, acceptable cost, and negligible heat loss. For this reason, it becomes a promising alternative to common sensible heat storage solutions for building applications. The integration of such a novel technology in buildings necessitates a method for the assessment of its potential impact and benefit, the comparison to common alternatives, and the optimization of the system design. This work proposes a method based on modeling and simulation of the interaction between the thermochemical heat storage system and the building using a data-driven surrogate model of the storage system in combination with a building performance simulation engine. The data-driven model was developed and validated based on laboratory measurements of a novel closed-loop thermochemical heat storage system, the heat battery (HB). The method was demonstrated in a case study to identify the optimal size of the HB in a solar-driven configuration based on a residential building use case. The results show that the heat battery can digest the thermal energy transferred from the solar thermal collector to reduce the original electricity consumption for heating the detached house (0.7 MWh to 1.0 MWh in considered cases) without any obvious sacrifice in thermal comfort and that the small-scale HB (with a storage volume below 160 liters) shows efficient usage of the designed storage capacity.
| Original language | English |
|---|---|
| Article number | 108354 |
| Number of pages | 11 |
| Journal | Journal of Energy Storage |
| Volume | 72 |
| Issue number | Part B |
| DOIs | |
| Publication status | Published - Nov 2023 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
-
SDG 7 Affordable and Clean Energy
Keywords
- thermochemical heat storage
- building performance simulation
- solar energy
- simulation-based optimization
- surrogate model
- Thermochemical heat storage
- Surrogate model
- Solar energy
- Simulation-based optimization
- Building performance simulation
Fingerprint
Dive into the research topics of 'A design optimization method for solar-driven thermochemical storage systems based on building performance simulation'. Together they form a unique fingerprint.Projects
- 1 Finished
-
Investigating the promising use case of the heat battery using building performance simulation (MMIP 9.4 Ontwikkeling van een gesloten-loop TCM systeem)
Hoes, P.-J. (Project Manager) & Wang, S. (Project member)
1/01/20 → 31/12/24
Project: Third tier
Research output
- 8 Citations - based on content available in repository [source: Scopus]
- 1 Article
-
Quantifying the decarbonization potential of mobile heat battery in low-temperature district heating
Wang, S. (Corresponding author), Hoes, P.-J., Hensen, J. L. M. & Adan, O. C. G., 15 Oct 2024, In: Sustainable Cities and Society. 113, 13 p., 105657.Research output: Contribution to journal › Article › Academic › peer-review
Open AccessFile6 Link opens in a new tab Citations (Scopus)307 Downloads (Pure)
Cite this
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver