A novel mathematical model for the performance assessment of diabatic compressed air energy storage systems including the turbomachinery characteristic curves
暂无分享,去创建一个
Roberto Gabbrielli | Stefano Briola | Paolo Di Marco | Juri Riccardi | R. Gabbrielli | P. D. Marco | J. Riccardi | Stefano Briola
[1] Haoran Zhao,et al. Review of energy storage system for wind power integration support , 2015 .
[2] Gianfranco Rizzo,et al. Application of dynamic programming to the optimal management of a hybrid power plant with wind turbines, photovoltaic panels and compressed air energy storage , 2012 .
[3] Dein Shaw,et al. Efficiency analysis and controller design of a continuous variable planetary transmission for a CAES wind energy system , 2012 .
[4] Ennio Macchi,et al. A Study of Thermodynamic Performance of CAES Plants, Including Unsteady Effects , 1987 .
[5] Martin Koller,et al. Advanced Adiabatic Compressed Air Energy Storage for the Integration of Wind Energy , 2004 .
[6] Daniel Wolf,et al. LTA-CAES – A low-temperature approach to Adiabatic Compressed Air Energy Storage , 2014 .
[7] J. K. Kaldellis,et al. Autonomous dual-mode CAES systems for maximum wind energy contribution in remote island networks , 2010 .
[8] Akinobu Murata,et al. Electrical energy storage systems for energy networks , 2000 .
[9] John K. Kaldellis,et al. Economic evaluation of the dual mode CAES solution for increased wind energy contribution in autonomous island networks , 2009 .
[10] Rafic Younes,et al. Optimization of diesel engine performances for a hybrid wind–diesel system with compressed air energy storage , 2011 .
[11] James P. Schmiedeler,et al. A low-cost hybrid drivetrain concept based on compressed air energy storage , 2014 .
[12] Hossein Safaei,et al. Compressed air energy storage (CAES) with compressors distributed at heat loads to enable waste heat utilization , 2013 .
[13] Wei Jiang,et al. Dynamic centrifugal compressor model for system simulation , 2006 .
[14] Henry Cohen,et al. Gas turbine theory , 1973 .
[15] Dacheng Li,et al. A trigeneration system based on compressed air and thermal energy storage , 2012 .
[16] Jay Apt,et al. Economics of compressed air energy storage to integrate wind power: A case study in ERCOT , 2011 .
[17] Andrea Luigi Facci,et al. Trigenerative micro compressed air energy storage: Concept and thermodynamic assessment , 2015 .
[18] D. Favrat,et al. Energy and exergy analysis of a micro-compressed air energy storage and air cycle heating and cooling system , 2008 .
[19] Hao Sun,et al. Feasibility study of a hybrid wind turbine system – Integration with compressed air energy storage , 2015 .
[20] Yongliang Li,et al. Adiabatic Compressed Air Energy Storage with Packed Bed Thermal Energy Storage , 2015 .
[21] Guangming Chen,et al. A new compressed air energy storage refrigeration system , 2006 .
[22] S. Khaitan,et al. Dynamics of hydrogen powered CAES based gas turbine plant using sodium alanate storage system , 2012 .
[23] Alfred J. Cavallo,et al. Energy Storage Technologies for Utility Scale Intermittent Renewable Energy Systems , 2001 .
[24] Adriano Sciacovelli,et al. Integrating compressed air energy storage with a diesel engine for electricity generation in isolated areas , 2016 .
[25] Yousef S.H. Najjar,et al. Power augmentation with CAES (compressed air energy storage) by air injection or supercharging makes environment greener , 2012 .
[26] Daniel Favrat,et al. Operating characteristics of constant-pressure compressed air energy storage (CAES) system combined , 2011 .
[27] Jihong Wang,et al. Overview of current development in electrical energy storage technologies and the application potential in power system operation , 2015 .
[28] C. Xia,et al. A simplified and unified analytical solution for temperature and pressure variations in compressed air energy storage caverns , 2015 .
[29] Rafic Younes,et al. Pneumatic hybridization of a diesel engine using compressed air storage for wind-diesel energy generation , 2012 .
[30] S. G. Penoncello,et al. Thermodynamic Properties of Air and Mixtures of Nitrogen, Argon, and Oxygen From 60 to 2000 K at Pressures to 2000 MPa , 2000 .
[31] Seamus D. Garvey,et al. Compressed air energy storage with liquid air capacity extension , 2015 .
[32] Jan Tommy Gravdahl,et al. Centrifugal compressor surge and speed control , 1999, IEEE Trans. Control. Syst. Technol..
[33] Niklas Hartmann,et al. Simulation and analysis of different adiabatic Compressed Air Energy Storage plant configurations , 2012 .
[34] Linda G. Shapiro,et al. Computer Vision , 2001 .
[35] Jinyue Yan,et al. A review on compressed air energy storage: Basic principles, past milestones and recent developments , 2016 .
[36] Rupp Carriveau,et al. Parameters affecting scalable underwater compressed air energy storage , 2014 .
[37] Reinhard Madlener,et al. Economics of centralized and decentralized compressed air energy storage for enhanced grid integration of wind power , 2013 .
[38] Thomas A. Adams,et al. Systems for peaking power with 100% CO2 capture by integration of solid oxide fuel cells with compressed air energy storage , 2013 .
[39] Rafic Younes,et al. Study and design of a hybrid wind-diesel-compressed air energy storage system for remote areas , 2010 .
[40] Daniele Fiaschi,et al. A versatile system for offshore energy conversion including diversified storage , 2012 .