A part-load analysis and control strategies for the Graz Cycle
Benjamin Mitterrutzner,Benjamin Mitterrutzner,Benjamin Mitterrutzner,Wolfgang Sanz,Lars O. Nord +4 more
TLDR
In this article, the Graz Cycle, a zero emission oxy-combustion power plant, is modelled for both investigations, full load and part load, and control strategies were developed in order to achieve optimum performances and operating efficiencies by means of the assumptions given.About:
This article is published in International Journal of Greenhouse Gas Control.The article was published on 2022-01-01 and is currently open access. It has received 4 citations till now. The article focuses on the topics: Combined cycle & Dispatchable generation.read more
Citations
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A novel system for electricity and synthetic natural gas production from captured CO2: Techno-economic evaluation and multi-objective optimization
TL;DR: In this article , a novel oxy-fuel combustion power plant integrated with a power to gas system is proposed to mitigate global warming and fossil fuel shortages, where a comprehensive economic method that covers all economic aspects is utilized, and a Sabatier reactor model is employed to ensure the practicality of the investigations.
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A Model Predictive Control-Based Decision-Making Strategy for Residential Microgrids
TL;DR: In this paper , a decision-making strategy for fulfilling the power and heat demands of small residential neighborhoods is presented, where the decision on the optimal operation of a microgrid is based on the model predictive control (MPC) rolling horizon.
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Thermodynamic and economic analysis of a revised Graz cycle using pure oxygen and hydrogen fuel
TL;DR: In this paper , an improved Graz cycle (R-Graz cycle) was proposed, which can realize more efficient hydrogen-to-electricity conversion by increasing the inlet temperature and pressure of the high-temperature gas turbine and reducing the condenser pressure.
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Advanced Gas Turbine Cooling for the Carbon-Neutral Era
TL;DR: In this paper , the authors present thermodynamic cycles that fulfil these requirements, as well as their verification tests, and show the required morphology of the cooling structures in airfoils, which enable industrial gas turbines with a higher efficiency.
References
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TL;DR: Pachauri et al. as discussed by the authors proposed a core writing team consisting of Rajendra K. Ravindranath, Myles R. Allen, Vicente R. Barros, John Broome, John A. Church, Leon Clarke, Qin Dahe (China), Purnamita Dasgupta (India), Navroz K. Dubash (India).
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Mai Bui,Claire S. Adjiman,André Bardow,Edward J. Anthony,Andy Boston,Solomon Brown,Paul S. Fennell,Sabine Fuss,Amparo Galindo,Leigh A. Hackett,Jason P. Hallett,Howard J. Herzog,George Jackson,Jasmin Kemper,Samuel Krevor,Geoffrey C. Maitland,Michael Matuszewski,Ian S. Metcalfe,Camille Petit,Graeme Puxty,Jeffrey A. Reimer,David Reiner,Edward S. Rubin,Stuart A. Scott,Nilay Shah,Berend Smit,Berend Smit,J. P. Martin Trusler,Paul A. Webley,Jennifer Wilcox,Niall Mac Dowell +30 more
TL;DR: In this article, the authors review the current state-of-the-art of CO2 capture, transport, utilisation and storage from a multi-scale perspective, moving from the global to molecular scales.
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Gas Turbine Engineering Handbook
TL;DR: Theoretical and Actual Cycle Analysis: Compressor and Turbine Performance Characteristics and Case Studies.