Rate capability and Ragone plots for phase change thermal energy storage
Autor: | Roderick K Jackson, Allison J. Mahvi, Jason Woods, Adewale Odukomaiya, Eric Kozubal, Anurag Goyal |
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Rok vydání: | 2021 |
Předmět: |
Materials science
Renewable Energy Sustainability and the Environment Nuclear engineering Energy Engineering and Power Technology 02 engineering and technology 010402 general chemistry 021001 nanoscience & nanotechnology Thermal energy storage 01 natural sciences Phase-change material Energy storage 0104 chemical sciences Electronic Optical and Magnetic Materials Power (physics) Fuel Technology Thermal 0210 nano-technology Material properties Energy (signal processing) Power density |
Zdroj: | Nature Energy. 6:295-302 |
ISSN: | 2058-7546 |
DOI: | 10.1038/s41560-021-00778-w |
Popis: | Phase change materials can improve the efficiency of energy systems by time shifting or reducing peak thermal loads. The value of a phase change material is defined by its energy and power density—the total available storage capacity and the speed at which it can be accessed. These are influenced by material properties but cannot be defined with these properties alone. Here we show the close link between energy and power density by developing thermal rate capability and Ragone plots, a framework widely used to describe the trade-off between energy and power in electrochemical storage systems (that is, batteries). Our results elucidate how material properties, geometry and operating conditions influence the performance of phase change thermal storage. This research sets a clear framework for comparing thermal storage materials and devices and can be used by researchers and designers to increase clean energy use with storage. Phase change materials are promising for thermal energy storage yet their practical potential is challenging to assess. Here, using an analogy with batteries, Woods et al. use the thermal rate capability and Ragone plots to evaluate trade-offs in energy storage density and power density in thermal storage devices. |
Databáze: | OpenAIRE |
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