Modeling and simulating diffused aeration for hydrogen removal from expansion tanks of parabolic trough solar thermal power plants

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Beckers Koenraad F.,Glatzmaier Greg C.

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Reference14 articles.

1. SolarPACES Concentrating Solar Power Projects Database (2017). https://www.nrel.gov/csp/solarpaces (accessed on July 3rd, 2017).

2. Moens, L. and Blake, D. (2008). Mechanism of hydrogen formation in solar parabolic trough receivers. NREL/TP-510-42468. Golden, CO: National Renewable Energy Laboratory.

3. Burkholder, F., Brandemuehl, M., Kutscher, C., and Wolfrum, E. (2008). Heat conduction of inert gas-hydrogen mixtures in parabolic trough receivers. In ASME 2008 2nd International Conference on Energy Sustainability collocated with the Heat Transfer, Fluids Engineering, and 3rd Energy Nanotechnology Conferences (pp. 449–458). American Society of Mechanical Engineers.

4. Glatzmaier, G. C., Cable, R., and Newmarker, M. (2016). Steady-state plant model to predict hydrogen levels in power plant components. 22nd SolarPACES Conference, Abu Dhabi, UAE.

5. Glatzmaier, G. C. (2009). Modeling hydrogen occurrence in parabolic trough power plants. 15th SolarPACES Conference, Berlin, Germany.

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