Economic Analysis and Life Cycle Assessment of Concrete Thermal Energy Storage for Parabolic Trough Power Plants

Author:

Laing D.1,Steinmann W. D.1,Viebahn P.1,Gräter F.2,Bahl C.3

Affiliation:

1. Institute of Technical Thermodynamics, German Aerospace Center (DLR), Pfaffenwaldring 38-40, Stuttgart 70569, Germany

2. Flagsol GmbH, 50678 Cologne, Germany

3. Ed. Züblin AG, 70435 Stuttgart, Germany

Abstract

For parabolic trough power plants using synthetic oil as the heat transfer medium, the application of solid media sensible heat storage is an attractive option in terms of investment and maintenance costs. One important aspect in storage development is the storage integration into the power plant. A modular operation concept for thermal storage systems was previously suggested by DLR, showing an increase in storage capacity of more than 100%. However, in these investigations, the additional costs needed to implement this storage concept into the power plant, such as for extra piping, valves, pumps, and control, had not been considered. These aspects are discussed in this paper, showing a decrease in levelized energy costs with a modular storage integration of 2–3%. In a life cycle assessment a comparison of an AndaSol-I type solar thermal power plant with the original two-tank molten salt storage and with a “hypothetical” concrete storage shows an advantage of the concrete storage technology concerning environmental impacts. The environmental impacts of the hypothetical concrete based AndaSol-I decreased by 7%, considering 1 kW h of solar electricity delivered to the grid. Regarding only the production of the power plant, the emissions decreased by 9.5%.

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference7 articles.

1. Project description AndaSol-I, http://www.solarmillennium.de/Technology/Reference-Projects/Solar_Millennium_Role_Model_Projects_,cat80.html

2. Advanced Thermal Energy Storage Technology for Parabolic Trough;Tamme;ASME J. Sol. Energy Eng.

3. Solarthermal Parabolic Trough Power Plants With Integrated Storage Capacity;Steinmann;Int. J. Energy Technology and Policy

4. Solid Media Thermal Storage Development and Analysis of Modular Storage Operation Concepts for Parabolic Trough Power Plants;Laing;ASME J. Sol. Energy Eng.

5. Development and Application of the MODELICA Library TECHTHERMO;Steinmann;Math. Comput. Model. Dyn. Syst.

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