H2020Individual fellowship2016–2018

THERMOSTALL · High Performance Seasonal Solar Energy Latent Heat Thermal Storage Using Low Grade, Low Melting Temperature Metallic Alloys

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2016-11-01 → 2018-10-31
EU contribution
€195,455
Participants
1
Scheme
MSCA-IF-EF-ST

Lines connect the coordinator with its partners.

Results in brief

High Performance Seasonal Solar Energy Latent Heat Thermal Storage Using Low Grade, Low Melting Temperature Metallic Alloys

Energy storage technologies are valuable components in most energy systems and could be an important tool in achieving a low-carbon future as is defined as the objective in the European Union’s “20-20-20” targets and in the European Commission’s Energy Roadmap 2050. It is envisaged that the share of Renewable energy sources in EU gross final energy consumption will achieve 55% in 2050. Thermal energy storage technologies can increase resource use efficiency and to support increasing use of variable renewable energy supply resources. The focus of this project has been on a Latent Heat Thermal Energy Storage System (LHTESS) which is currently a key international priority and relates to a phase transformation of the phase change materials (PCMs), typically changing from solid phase to liquid and vice versa. The major barrier for currently used PCMs (organic and hydrated salts) is their very low heat conduction coefficient, low density, chemical instability and tendency to overcooling. The aim of the project, performed at the Faculty of Engineering & Environment of Northumbria University, has been to deploy low grade, eutectic low melting temperature metallic alloys (ELMTAs) with low purity as a PCM. The ELMTAs are currently produced for application in other areas and have not been considered in detail for the thermal energy accumulation, except in some very limited number of studies. These alloys are stable, and their thermal heat conduction is significantly greater than that of conventional PCMs and this feature can be used to reduce significantly the complexity of the design of a LHTESS and costs of manufacturing.

Data: CORDIS, © European Union

Project objective

Energy storage technologies have long been a subject of great interest to both academia and industry. The aim of this project is to develop a novel, cost effective and high performance Latent Heat Thermal Energy Storage System (LHTESS) for seasonal accumulation of solar energy in increased quantities. The major barrier for currently used Phase Change Materials (PCMs, organic and hydrated salts) is their very low heat conduction coefficient, low density, chemical instability and tendency to sub-cooling. Such inferior thermo-physical properties result in the LHTESS having large dimensions and not having a capacity to provide the necessary rate of heat re-charge and discharge, even with highly developed heat exchangers. The new approach to overcome the above issues is the deployment of low grade, eutectic low melting temperature metallic alloys (ELMTAs). The ELMTAs are currently produced for application in other areas and have not been actively considered for the thermal energy accumulation with the exception of very limited studies. Their heat conduction is two orders of magnitude greater than that of conventional PCMs, they are stable and provide the thermal storage capacity which is 2-3 times greater per unit of volume. The project consists of both theoretical and experimental investigations. A range of low grade ELMTAs for application in LHTESS will be selected and Differential Scanning Calorimetry will be used to measure their thermal properties. Thermal cycling tests of such alloys will be conducted. Numerical investigations of heat transfer and flow in the LHTESS with ELMTAs will be performed. Experimental studies of heat transfer and flow in a laboratory prototype of the LHTESS with ELMTAs will be conducted. As outcomes of investigations, dimensionless heat transfer correlations will be derived and design recommendations for a practical solar energy seasonal LHTESS with the low grade ELMTA will be produced for project industrial partner

Original text from CORDIS.

Participants

  • UNIVERSITY OF NORTHUMBRIA AT NEWCASTLE · NEWCASTLE UPON TYNECoordinatorUnited Kingdom

Links

Data: CORDIS, © European Union