Investigation of the charge boost technology for the efficiency increase of closed sorption thermal energy storage systems

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Abstract

The inclusion of solar thermal energy into energy systems requires storage possibilities to overcome the gap between supply and demand. Storage of thermal energy with closed sorption thermal energy systems has the advantage of low thermal losses and high energy density. However, the efficiency of these systems needs yet to be increased to become competitive on the market. In this paper, the so-called "charge boost technology" is developed and tested via experiments as a new concept for the efficiency increase of compact thermal energy storages. The main benefit of the charge boost technology is that it can reach a defined state of charge for sorption thermal energy storages at lower temperature levels than classic pure desorption processes. Experiments are conducted to provide a proof of principle for this concept. The results show that the charge boost technology does function as predicted and is a viable option for further improvement of sorption thermal energy storages. Subsequently, a new process application is developed by the author with strong focus on the utilization of the advantages of the charge boost technology over conventional desorption processes. After completion of the conceptual design, the theoretical calculations are validated via experiments.

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Rohringer, C., Engel, G., Köll, R., Wagner, W., & Van Helden, W. (2017). Investigation of the charge boost technology for the efficiency increase of closed sorption thermal energy storage systems. In IOP Conference Series: Materials Science and Engineering (Vol. 251). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/251/1/012121

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