Stockage d'énergie de réseau (French Wikipedia)

Analysis of information sources in references of the Wikipedia article "Stockage d'énergie de réseau" in French language version.

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aemo.com.au

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archive.ph

  • (en) Edmund Conway, « World's biggest battery switched on in Alaska - Telegraph », The Telegraph,‎ (lire en ligne, consulté le ).

arquivo.pt

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bbc.co.uk

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  • Nehemiah Hawkins, Hawkins Electrical Guide... : Questions, Answers & Illustrations; a Progressive Course of Study for Engineers, Electricians, Students and Those Desiring to Acquire a Working Knowledge of Electricity and Its Applications; a Practical Treatise, T. Audel & Company, , 989– (lire en ligne).

brunel.ac.uk

bura.brunel.ac.uk

  • Chun Sing Lai et Malcolm D. McCulloch, « Levelized cost of electricity for solar photovoltaic and electrical energy storage », Applied Energy, vol. 190,‎ , p. 191–203 (DOI 10.1016/j.apenergy.2016.12.153, lire en ligne).

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  • (en) Chun Sing Lai, Giorgio Locatelli, Andrew Pimm et Xiaomei Wu, « A review on long-term electrical power system modeling with energy storage », Journal of Cleaner Production, vol. 280,‎ , p. 124298 (DOI 10.1016/j.jclepro.2020.124298).
  • (en) Xing Luo, Jihong Wang, Mark Dooner et Jonathan Clarke, « Overview of current development in electrical energy storage technologies and the application potential in power system operation », Applied Energy, vol. 137,‎ , p. 511–536 (DOI 10.1016/j.apenergy.2014.09.081).
  • (en) Omid Palizban et Kimmo Kauhaniemi, « Energy storage systems in modern grids—Matrix of technologies and applications », Journal of Energy Storage, vol. 6,‎ , p. 248–259 (DOI 10.1016/j.est.2016.02.001).
  • (en) Tugrul U. Daim, Xin Li, Jisun Kim et Scott Simms, « Evaluation of energy storage technologies for integration with renewable electricity: Quantifying expert opinions », Environmental Innovation and Societal Transitions, vol. 3,‎ , p. 29–49 (DOI 10.1016/j.eist.2012.04.003).
  • (en) Cong-Toan Pham et Daniel Månsson, 2015 International Symposium on Smart Electric Distribution Systems and Technologies (EDST), vol. 2015 International Symposium on Smart Electric Distribution Systems and Technologies (EDST), , 452–457 p. (ISBN 978-1-4799-7736-9, DOI 10.1109/SEDST.2015.7315251), « Suitability analysis of Fuzzy Logic as an evaluation method for the selection of energy storage technologies in Smart Grid applications ».
  • (en) Cong-Toan Pham et Daniel Månsson, « On the physical system modelling of energy storages as equivalent circuits with parameter description for variable load demand (Part I) », Journal of Energy Storage, vol. 13,‎ , p. 73–84 (DOI 10.1016/j.est.2017.05.015, lire en ligne, consulté le ).
  • (en) Cong-Toan Pham et Daniel Månsson, « Optimal energy storage sizing using equivalent circuit modelling for prosumer applications (Part II) », Journal of Energy Storage, vol. 18,‎ , p. 1–15 (DOI 10.1016/j.est.2018.04.015).
  • (en) Syed Shabbar Raza, Isam Janajreh et Chaouki Ghenai, « Sustainability index approach as a selection criteria for energy storage system of an intermittent renewable energy source », Applied Energy, vol. 136,‎ , p. 909–920 (DOI 10.1016/j.est.2018.04.015).
  • (en) Rodrigo Moreno, Roberto Moreira et Goran Strbac, « A MILP model for optimising multi-service portfolios of distributed energy storage », Applied Energy, vol. 137,‎ , p. 554–566 (DOI 10.1016/j.apenergy.2014.08.080, lire en ligne [PDF]).
  • (en) Rachel Lee, Samuel Homan, Niall Mac Dowell et Solomon Brown, « A closed-loop analysis of grid scale battery systems providing frequency response and reserve services in a variable inertia grid », Applied Energy, vol. 236,‎ , p. 961–972 (DOI 10.1016/j.apenergy.2018.12.044, lire en ligne [PDF]).
  • (en) Ehsan Reihani, Mahdi Motalleb, Reza Ghorbani et Lyes Saad Saoud, « Load peak shaving and power smoothing of a distribution grid with high renewable energy penetration », Renewable Energy, vol. 86,‎ , p. 1372–1379 (DOI 10.1016/j.renene.2015.09.050).
  • (en) P.T. Moseley, « ELECTROLYTES | Solid: Sodium Ions », dans Encyclopedia of Electrochemical Power Sources, Elsevier, (DOI 10.1016/B978-044452745-5.00016-2, lire en ligne), p. 196–214.
  • (en) « The United States of storage », IEEE Power and Energy Magazine, vol. 3, no 2,‎ , p. 31–9 (DOI 10.1109/MPAE.2005.1405868).
  • (en) Martin Lamonica, « Flow batteries could back up grid of the future », New Scientist, vol. 217, no 2909,‎ , p. 22 (DOI 10.1016/S0262-4079(13)60735-6, Bibcode 2013NewSc.217...22L, lire en ligne [archive du ]).
  • (en) A. Yıldırım, « NATURALHY (The Potential of Existing Natural Gas Network for Hydrogen Delivery) Project Objectives and Some Results », Conference Proceedings, 18th International Petroleum and Natural Gas Congress and Exhibition of Turke, European Association of Geoscientists & Engineers,‎ , cp (DOI 10.3997/2214-4609-pdb.377.155, lire en ligne, consulté le ).
  • Rong Lan et Shanwen Tao, « Ammonia as a Suitable Fuel for Fuel Cells », Frontiers in Energy Research, vol. 2,‎ (DOI 10.3389/fenrg.2014.00035).
  • (en) Weijia Yuan et Min Zhang, « Superconducting Magnetic Energy Storage (SMES) Systems », dans Handbook of Clean Energy Systems, John Wiley & Sons, Ltd, (ISBN 978-1-118-99197-8, DOI 10.1002/9781118991978.hces210, lire en ligne), p. 1–16.
  • Zachary E. Lee, Qingxuan Sun, Zhao Ma et Jiangfeng Wang, « Providing Grid Services With Heat Pumps: A Review », Journal of Engineering for Sustainable Buildings and Cities, vol. 1, no 1,‎ (DOI 10.1115/1.4045819, lire en ligne).
  • Olivier Dumont, Guido Francesco Frate, Aditya Pillai et Steven Lecompte, « Carnot battery technology: A state-of-the-art review », Journal of Energy Storage, vol. 32,‎ , p. 101756 (ISSN 2352-152X, DOI 10.1016/j.est.2020.101756).
  • Chun Sing Lai et Malcolm D. McCulloch, « Levelized cost of electricity for solar photovoltaic and electrical energy storage », Applied Energy, vol. 190,‎ , p. 191–203 (DOI 10.1016/j.apenergy.2016.12.153, lire en ligne).
  • Lai, Jia, Xu et Lai, « Levelized cost of electricity for photovoltaic/biogas power plant hybrid system with electrical energy storage degradation costs », Energy Conversion and Management, vol. 153,‎ , p. 34–47 (DOI 10.1016/j.enconman.2017.09.076, lire en ligne).

earthdoc.org

  • (en) A. Yıldırım, « NATURALHY (The Potential of Existing Natural Gas Network for Hydrogen Delivery) Project Objectives and Some Results », Conference Proceedings, 18th International Petroleum and Natural Gas Congress and Exhibition of Turke, European Association of Geoscientists & Engineers,‎ , cp (DOI 10.3997/2214-4609-pdb.377.155, lire en ligne, consulté le ).

economist.com

  • (en) « Powering the future: Electrical energy can be captured as liquid air », The Economist,‎ (lire en ligne, consulté le ).

edison.com

newsroom.edison.com

efda.org

eia.gov

electricitystorage.org

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energyglobal.com

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  • Zachary E. Lee, Qingxuan Sun, Zhao Ma et Jiangfeng Wang, « Providing Grid Services With Heat Pumps: A Review », Journal of Engineering for Sustainable Buildings and Cities, vol. 1, no 1,‎ (DOI 10.1115/1.4045819, lire en ligne).

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harvard.edu

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ic.ac.uk

doc.ic.ac.uk

ieawind.org

imperial.ac.uk

spiral.imperial.ac.uk

  • (en) Rodrigo Moreno, Roberto Moreira et Goran Strbac, « A MILP model for optimising multi-service portfolios of distributed energy storage », Applied Energy, vol. 137,‎ , p. 554–566 (DOI 10.1016/j.apenergy.2014.08.080, lire en ligne [PDF]).

isentropic.co.uk

issn.org

portal.issn.org

  • Junior Isles, « Really cool storage », The Energy Industry Times, vol. 13, no 5,‎ , p. 15 (ISSN 1757-7365, lire en ligne, consulté le ).
  • Olivier Dumont, Guido Francesco Frate, Aditya Pillai et Steven Lecompte, « Carnot battery technology: A state-of-the-art review », Journal of Energy Storage, vol. 32,‎ , p. 101756 (ISSN 2352-152X, DOI 10.1016/j.est.2020.101756).

kb.se

urn.kb.se

  • (en) Cong-Toan Pham et Daniel Månsson, « On the physical system modelling of energy storages as equivalent circuits with parameter description for variable load demand (Part I) », Journal of Energy Storage, vol. 13,‎ , p. 73–84 (DOI 10.1016/j.est.2017.05.015, lire en ligne, consulté le ).

kurzweilai.net

lazard.com

leonardo-energy.org

lesechos.fr

memagazine.org

mit.edu

web.mit.edu

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  • (en) Josie Garthwaite, « Second Life for Old Electric-Car Batteries: Guardians of the Electric Grid », National Geographic,‎ (lire en ligne).

naturalhy.net

newscientist.com

ox.ac.uk

ora.ox.ac.uk

  • Lai, Jia, Xu et Lai, « Levelized cost of electricity for photovoltaic/biogas power plant hybrid system with electrical energy storage degradation costs », Energy Conversion and Management, vol. 153,‎ , p. 34–47 (DOI 10.1016/j.enconman.2017.09.076, lire en ligne).

ozy.com

planetark.com

pnnl.gov

qz.com

  • (en) « Stacking concrete blocks is a surprisingly efficient way to store energy », Quartz,‎ (lire en ligne).

raponline.org

redtenergy.com

reneweconomy.com.au

researchgate.net

rethinkingwater.ca

sciencedirect.com

sciencemag.org

scotsman.com

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scppa.org

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  • Nadya Anscombe, « Energy storage: Could hydrogen be the answer? », Solar Novus Today,‎ (lire en ligne, consulté le ).

technologyreview.com

theguardian.com

thewhir.com

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tu.no

ucl.ac.uk

bartlett.ucl.ac.uk

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whiterose.ac.uk

eprints.whiterose.ac.uk

  • (en) Rachel Lee, Samuel Homan, Niall Mac Dowell et Solomon Brown, « A closed-loop analysis of grid scale battery systems providing frequency response and reserve services in a variable inertia grid », Applied Energy, vol. 236,‎ , p. 961–972 (DOI 10.1016/j.apenergy.2018.12.044, lire en ligne [PDF]).

wiley.com

onlinelibrary.wiley.com

zmescience.com

  • (en) Alexandru Micu, « Rows of Tesla batteries will keep Southern California's lights on during the night », ZME Science,‎ (lire en ligne, consulté le ).