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Development of a Thermal Energy Storage System for Parabolic Trough Power Plants With Direct Steam Generation
- Source :
- ASME 2009 3rd International Conference on Energy Sustainability, Volume 2.
- Publication Year :
- 2009
- Publisher :
- ASMEDC, 2009.
-
Abstract
- For future parabolic trough plants direct steam generation in the absorber pipes is a promising option for reducing the costs of solar thermal power generation. These new solar thermal power plants require innovative storage concepts, where the two phase heat transfer fluid poses a major challenge. A three-part storage system is proposed where a phase change material (PCM) storage will be deployed for the two-phase evaporation, while concrete storage will be used for storing sensible heat, i.e. for preheating of water and superheating of steam. A pinch analysis helps to recognize interface constraints imposed by the solar field and the power block and describes a way to dimension the latent and sensible components. Laboratory test results of a PCM test module with approx. 140 kg NaNO3, applying the sandwich concept for enhancement of heat transfer, are presented, proving the expected capacity and power density. The concrete storage material for sensible heat was improved to allow the operation up to 500 °C for direct steam generation. A storage system with a total storage capacity of approx. 1 MWh is described, combining a PCM module and a concrete module, which will be tested in 2009 under real steam conditions around 100 bar.
- Subjects :
- Engineering
Power station
Renewable Energy, Sustainability and the Environment
business.industry
Energy Engineering and Power Technology
Thermal power station
Mechanical engineering
Direct Steam Generation
Steam-electric power station
Thermal energy storage
Phase Change Material
Phase-change material
Thermal Energy Storage
Parabolic Trough Power Plant
Heat recovery steam generator
Computer data storage
Heat transfer
Pinch analysis
Parabolic trough
Process engineering
business
Concrete
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- ASME 2009 3rd International Conference on Energy Sustainability, Volume 2
- Accession number :
- edsair.doi.dedup.....ec7790edeafba77b423191a41ac9bd7e