Page 56 - Low Temperature Energy Systems with Applications of Renewable Energy
P. 56

44                  Low-Temperature Energy Systems with Applications of Renewable Energy

         References


          [1] BP statistical review of world energy. London, UK: BP; 2016. http://www.bp.com/
             statisticalreview.
          [2] OECD/IEA. World energy model documentation. International Energy Agency; 2015.
             www.worldenergyoutlook.org.
          [3] OECD/IEA. Energy technology perspectives e Harnessing electricity’s potential. Inter-
             national  Energy  Agency;  2014.  http://www.iea.org/publications/freepublications/
             publication/EnergyTechnologyPerspectives2014.pdf.
          [4] Key world energy statistics. IEA, International Energy Agency; 2017. https://www.iea.org/
             publications/freepublications/publication/KeyWorld2017.pdf.
          [5] Electric power monthly with data for December 2017, US Energy Information Agency,
             Table B.1 major disturbances and unusual occurrences, year-to-date 2017; February 2018.
             https://www.eia.gov/electricity/monthly/current_month/epm.pdf.  https://www.eia.gov/
             electricity/monthly/epm_table_grapher.php?t¼epmt_b_1.
          [6] Jahreswirtschaftsbericht 2016: Zukunftsf€ ahigkeit sichern e Die Chancen des digitalen
             Wandels nutzen. (Annual economic report 2016: securing future viability using the op-
             portunities of digital change) Bundesministerium f€ ur Wirtschaft und Energie (Federal
             Ministry of Economy and Energy), Germany (in German). https://www.bmwi.de/
             Redaktion/DE/Publikationen/Wirtschaft/jahreswirtschaftsbericht-2016.pdf?__blob¼publi
             cationFile&v¼18.
          [7] Statutory report (in accordance with Norwegian authority requirements). Stavanger,
             Norway: Statoil; 2014. https://www.statoil.com.
          [8] Annual report and form 20-F for the year ended December 31, 2016. Royal Dutch Shell
             plc, The Hague, The Netherlands. http://reports.shell.com/annual-report/2016/.
          [9] OECD regional outlook 2016: productive regions for inclusive societies. Paris: OECD
             Publishing; 2016. https://doi.org/10.1787/9789264260245-en.
         [10] The OECD Post-2015 reflection series, OECD. http://www.oecd.org/dac/post-2015.htm.
         [11] Federal power act. 1920. https://en.wikipedia.org/wiki/Federal_Power_Act.
         [12] Dossat RJ, Horan TJ. Principles of refrigeration. John Wiley and Sons; 2001.
         [13] Moran MJ, Shapiro HN. Fundamentals of engineering thermodynamics. 5th ed. John
             Wiley & Sons; 2006.
         [14] Zogg M. History of heat pumps: Swiss contributions and international milestones. 9th
             International IEA heat pump conference, Z€ urich, Switzerland, 20e22 May 2008.
         [15] Forsen M. Heat pumps e technology and environmental impact, Part 1. July 2005. http://
             ec.europa.eu/environment/ecolabel/about_ecolabel/reports/hp_tech_env_impact_aug
             2005.pdf.
         [16] Heating and cooling with a heat pump. EnerGuide, Office of Energy Efficiency, Natural
             Resources Canada; 2004.
         [17] Stierlin H. Beitrag zur Theorie der Absorptionsk€ altemaschinen (in German), (contribution
             to the theory of absorption refrigeration), Kabeltechnik (cable technology) 16, 1964.
         [18] A to zero of refrigeration, Public relations staff, general motors, Detroit, MI, 13th printing;
             1964, p. 81.
         [19] Bejan A, Tsatsaronis G, Moran M. Thermal design and optimization. John Wiley and Sons
             Inc.; 1996. p. 113e62.
         [20] Kim SM, Oh SD, et al. Exergoeconomic analysis of thermal systems. Energy 1998;23(5):
             393e406.
   51   52   53   54   55   56   57   58   59   60   61